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Non-Tetrahedrally Bonded Elements and Binary Compounds I

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Cover of 'Non-Tetrahedrally Bonded Elements and Binary Compounds I'

Table of Contents

  1. Altmetric Badge
    Book Overview
  2. Altmetric Badge
    Chapter 1 General Introduction
  3. Altmetric Badge
    Chapter 2 List of frequently used symbols and abbreviations, conversion factors
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    Chapter 3 IA(x)-IB(y) compounds general characterization
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    Chapter 4 IA(x)-IB(y) compounds crystal structure of IA-IB2 compounds
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    Chapter 5 IA(x)-IB(y) compounds crystal structure of IA-IB5 compounds
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    Chapter 6 IA(x)-IB(y) compounds crystal structure of IA2-IB3 compounds
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    Chapter 7 IA(x)-IB(y) compounds crystal structure of IA3-IB7 compounds
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    Chapter 8 CsAu crystal structure, chemical bond
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    Chapter 9 CsAu band structure
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    Chapter 10 CsAu energy gap, interband transition energies
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    Chapter 11 CsAu transport properties
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    Chapter 12 CsAu further properties
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    Chapter 13 RbAu crystal structure, chemical bond
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    Chapter 14 RbAu band structure
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    Chapter 15 RbAu transport and further properties
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    Chapter 16 I(x)-V(y) compounds crystal structure of I3-V compounds
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    Chapter 17 I(x)-V(y) compounds lattice parameters of I3-V compounds
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    Chapter 18 I(x)-V(y) compounds crystal structure, lattice parameters of I(x)I(y)-V compounds
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    Chapter 19 I(x)-V(y) compounds chemical bond
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    Chapter 20 K2CsSb crystal structure, lattice parameter
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    Chapter 21 K2CsSb physical properties
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    Chapter 22 Na2RbSb, Na2CsSb, K2RbSb, Rb2CsSb crystal structure, physical properties
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    Chapter 23 K2NaSb crystal structure
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    Chapter 24 NaSb, KSb, RbSb, CsSb crystal structure, lattice parameters
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    Chapter 25 NaSb, KSb, RbSb, CsSb semiconducting properties
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    Chapter 26 NaSb, KSb, RbSb, CsSb melting points
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    Chapter 27 Li3Sb, Li3Bi crystal structure, chemical bond
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    Chapter 28 Li3Sb, Li3Bi physical properties
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    Chapter 29 Na3Sb crystal structure, chemical bond
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    Chapter 30 Na3Sb band structure, energy gap
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    Chapter 31 Na3Sb transport and further properties
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    Chapter 32 K3Sb crystal structure, chemical bond
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    Chapter 33 K3Sb band structure, energy gap
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    Chapter 34 K3Sb interband transition energies
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    Chapter 35 K3Sb lattice, transport and further properties
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    Chapter 36 Rb3Sb crystal structure, chemical bond
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    Chapter 37 Rb3Sb band structure, energy gap
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    Chapter 38 Rb3Sb transport, optical and further properties
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    Chapter 39 Cs3Sb crystal structure, chemical bond
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    Chapter 40 Cs3Sb band structure and energies, impurity levels
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    Chapter 41 Cs3Sb transport and further properties
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    Chapter 42 Rb3Bi, Cs3Bi crystal structure, chemical bond
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    Chapter 43 Rb3Bi, Cs3Bi physical properties
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    Chapter 44 K3Bi, Na3Bi crystal structure, chemical bond
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    Chapter 45 Na2KSb crystal structure, chemical bond
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    Chapter 46 Na2KSb band structure and energies, impurity levels
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    Chapter 47 Na2KSb lattice and transport properties
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    Chapter 48 Na2KSb optical properties
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    Chapter 49 Au tellurides crystal structure, lattice parameters
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    Chapter 50 Ternary I-VI compounds crystal structure, lattice parameters
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    Chapter 51 Cupric oxide (CuO) crystal structure, lattice parameters
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    Chapter 52 Cupric oxide (CuO) electronic properties
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    Chapter 53 Cupric oxide (CuO) lattice properties
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    Chapter 54 Cupric oxide (CuO) transport and optical properties
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    Chapter 55 Cupric oxide (CuO) magnetic properties, heat capacity, density
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    Chapter 56 Cuprous oxide (Cu2O) crystal structure, lattice parameters
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    Chapter 57 Cuprous oxide (Cu2O) optical properties
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    Chapter 58 Cuprous oxide (Cu2O) dielectric constant
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    Chapter 59 Cuprous oxide (Cu2O) magnetic properties
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    Chapter 60 Cuprous oxide (Cu2O) Debye temperature, density, melting point
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    Chapter 61 Cuprous oxide (Cu2O) diffusion coefficients
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    Chapter 62 Non-Tetrahedrally Bonded Elements and Binary Compounds I
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    Chapter 63 Cuprous oxide (Cu2O) effective masses
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    Chapter 64 Cuprous oxide (Cu2O) excitons
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    Chapter 65 Cuprous oxide (Cu2O) phonon dispersion, phonon frequencies
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    Chapter 66 Cuprous oxide (Cu2O) sound velocities, elastic moduli
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    Chapter 67 Cuprous oxide (Cu2O) Young’s and shear moduli, compressibility
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    Chapter 68 Cuprous oxide (Cu2O) thermal expansion, Grüneisen parameter
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    Chapter 69 Cuprous oxide (Cu2O) transport properties
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    Chapter 70 Copper sulfides (Cu2S, Cu(2-x)S) crystal structure, lattice parameters
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    Chapter 71 Copper sulfides (Cu2S, Cu(2-x)S) energy gap, effective masses
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    Chapter 72 Copper sulfides (Cu2S, Cu(2-x)S) compressibility and thermal expansion
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    Chapter 73 Copper sulfides (Cu2S, Cu(2-x)S) transport properties
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    Chapter 74 Copper sulfides (Cu2S, Cu(2-x)S) optical and further properties
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    Chapter 75 Copper selenides (Cu2Se, Cu(2-x)Se) crystal structure, lattice parameters
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    Chapter 76 Copper selenides (Cu2Se, Cu(2-x)Se) electronic and transport properties
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    Chapter 77 Copper selenides (Cu2Se, Cu(2-x)Se) optical and further properties
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    Chapter 78 Copper tellurides (Cu2Te, Cu(2-x)Te) crystal structure, lattice parameters
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    Chapter 79 Copper tellurides (Cu2Te, Cu(2-x)Te) physical properties
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    Chapter 80 Silver oxides (Ag(x)O(y)) crystal structure, lattice parameters
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    Chapter 81 Silver oxides (Ag(x)O(y)) physical properties of AgO
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    Chapter 82 Silver oxides (Ag(x)O(y)) energy gap, effective masses, Ag2O
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    Chapter 83 Silver oxides (Ag(x)O(y)) phonon frequencies, Ag2O
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    Chapter 84 Silver oxides (Ag(x)O(y)) transport and optical properties, Ag2O
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    Chapter 85 Silver oxides (Ag(x)O(y)) further properties, Ag2O
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    Chapter 86 Non-Tetrahedrally Bonded Elements and Binary Compounds I
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    Chapter 87 Silver sulfide (Ag2S) band structure, effective masses, alpha-modification
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    Chapter 88 Silver sulfide (Ag2S) lattice and further properties, alpha-modification
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    Chapter 89 Silver sulfide (Ag2S) transport properties, alpha-modification
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    Chapter 90 Silver sulfide (Ag2S) magnetic properties, alpha-modification
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    Chapter 91 Silver sulfide (Ag2S) energy gap, effective masses, beta-modification
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    Chapter 92 Silver sulfide (Ag2S) transport and further properties, b- and g-modification
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    Chapter 93 Silver selenide (Ag2Se) crystal structure, lattice parameters
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    Chapter 94 Silver selenide (Ag2Se) energy gap, effective masses
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    Chapter 95 Silver selenide (Ag2Se) transport properties
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    Chapter 96 Silver selenide (Ag2Se) optical and further properties
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    Chapter 97 Silver tellurides (Ag(x)Te(y)) crystal structure, lattice parameters
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    Chapter 98 Silver tellurides (Ag(x)Te(y)) physical properties, alpha-Ag2Te
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    Chapter 99 Silver tellurides (Ag(x)Te(y)) physical properties, beta- and gamma-Ag2Te
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    Chapter 100 Magnesium silicide (Mg2Si) band structure, energy gap
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    Chapter 101 Magnesium silicide (Mg2Si) intra- and interband transitions, effective masses
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    Chapter 102 Magnesium silicide (Mg2Si) crystal structure, chemical bond
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    Chapter 103 Magnesium silicide (Mg2Si) lattice parameter, thermal expansion, compressibility
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    Chapter 104 Magnesium silicide (Mg2Si) phonon dispersion relations and frequencies
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    Chapter 105 Magnesium silicide (Mg2Si) sound velocities, elastic moduli
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    Chapter 106 Magnesium silicide (Mg2Si) Debye temperature, heat capacity, density, melting point
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    Chapter 107 Magnesium silicide (Mg2Si) electrical and thermal transport properties
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    Chapter 108 Magnesium silicide (Mg2Si) optical properties, dielectric constant
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    Chapter 109 Magnesium germanide (Mg2Ge) band structure, energy gap
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    Chapter 110 Magnesium germanide (Mg2Ge) intra- and interband energies, donor levels, deformation potential, effective masses
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    Chapter 111 Magnesium germanide (Mg2Ge) crystal structure, chemical bond
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    Chapter 112 Magnesium germanide (Mg2Ge) lattice parameters, thermal expansion, compressibility
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    Chapter 113 Magnesium germanide (Mg2Ge) phonon dispersion relations and frequencies
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    Chapter 114 Magnesium germanide (Mg2Ge) sound velocities, elastic moduli
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    Chapter 115 Magnesium germanide (Mg2Ge) Debye temperature, heat capacity, density, melting point
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    Chapter 116 Magnesium germanide (Mg2Ge) electrical and thermal transport properties
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    Chapter 117 Magnesium germanide (Mg2Ge) optical properties, dielectric constant
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    Chapter 118 Magnesium stannide (Mg2Sn) band structure, energy gap
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    Chapter 119 Magnesium stannide (Mg2Sn) magnetic properties
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    Chapter 120 Magnesium stannide (Mg2Sn) intra- and interband energies, effective masses, deformation potentials
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    Chapter 121 Magnesium stannide (Mg2Sn) crystal structure, chemical bond
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    Chapter 122 Magnesium stannide (Mg2Sn) lattice parameter, thermal expansion, compressibility
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    Chapter 123 Magnesium stannide (Mg2Sn) Debye temperature, heat capacity, density, melting point
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    Chapter 124 Magnesium stannide (Mg2Sn) phonon dispersion relations and frequencies
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    Chapter 125 Magnesium stannide (Mg2Sn) sound velocity, elastic moduli
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    Chapter 126 Magnesium stannide (Mg2Sn) electrical and thermal transport properties
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    Chapter 127 Magnesium stannide (Mg2Sn) optical properties, dielectric constant
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    Chapter 128 Magnesium plumbide (Mg2Pb) band structure, band parameters and effective masses
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    Chapter 129 Magnesium plumbide (Mg2Pb) crystal structure, chemical bond
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    Chapter 130 Magnesium plumbide (Mg2Pb) lattice parameter, thermal expansion, compressibility
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    Chapter 131 Magnesium plumbide (Mg2Pb) Debye temperature, heat capacity, density, melting point
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    Chapter 132 Magnesium plumbide (Mg2Pb) phonon frequencies
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    Chapter 133 Magnesium plumbide (Mg2Pb) transport properties
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    Chapter 134 Solid solutions Mg2X(x)Y(1-x) physical properties
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    Chapter 135 Ca2Si, Ca2Sn, Ca2Pb crystal structure, physical properties
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    Chapter 136 BaSi2, BaGe2, SrGe2 crystal structure, physical properties
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    Chapter 137 II(x)-V(y) solid solutions: general tables structural data of II(x)-V(y) solid solutions
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    Chapter 138 II(x)-V(y) compounds: general tables crystal structure and chemical bond of II3-V2 phosphides
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    Chapter 139 II(x)-V(y) compounds: general tables structural data of the Zn-P system
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    Chapter 140 II(x)-V(y) compounds: general tables structural data of the Zn-As system
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    Chapter 141 II(x)-V(y) compounds: general tables structural data of the Zn-Sb system
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    Chapter 142 II(x)-V(y) compounds: general tables structural data of the Cd-P system
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    Chapter 143 II(x)-V(y) compounds: general tables structural data of the Cd-As system
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    Chapter 144 II(x)-V(y) compounds: general tables structural data of the Cd-Sb system
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    Chapter 145 II(x)-V(y) compounds: general tables crystal structure and chemical bond of II3-V2 arsenides
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    Chapter 146 II(x)-V(y) compounds: general tables crystal structure and chemical bond of II-V2 phosphides
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    Chapter 147 II(x)-V(y) compounds: general tables crystal structure and chemical bond of II-V2 arsenides
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    Chapter 148 II(x)-V(y) compounds: general tables crystal structure and chemical bond of CdP4
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    Chapter 149 II(x)-V(y) compounds: general tables crystal structure and chemical bond of MgP4
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    Chapter 150 II(x)-V(y) compounds: general tables crystal structure and chemical bond of II-V compounds
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    Chapter 151 II(x)-V(y) compounds: general tables structural data of the Mg-P system
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    Chapter 152 II(x)-V(y) compounds: general tables structural data of the Mg-As system
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    Chapter 153 Cadmium arsenide (CdAs2) band structure parameters
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    Chapter 154 Cadmium arsenide (CdAs2) physical properties of amorphous phase
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    Chapter 155 Cadmium arsenide (CdAs2) impurities and defects
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    Chapter 156 Cadmium arsenide (CdAs2) crystal structure and chemical bond, lattice parameters, thermal expansion
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    Chapter 157 Cadmium arsenide (CdAs2) compressibility, Grüneisen coefficient
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    Chapter 158 Cadmium arsenide (CdAs2) Debye temperature, heat capacity, density, melting point
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    Chapter 159 Cadmium arsenide (CdAs2) electrical and thermal transport properties
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    Chapter 160 Cadmium arsenide (CdAs2) optical properties, dielectric constants
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    Chapter 161 Cadmium arsenide (CdAs2) magnetic properties
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    Chapter 162 Cadmium arsenide (CdAs2) parameters of vaporization, dissociation, formation, fusion, free energy
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    Chapter 163 Solid solutions between II-V2compounds physical properties
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    Chapter 164 MgP4 crystal structure, physical properties
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    Chapter 165 MgAs4 crystal structure, physical properties
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    Chapter 166 ZnP4, CdP4 crystal structure, lattice parameters, density
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    Chapter 167 ZnP4, CdP4 energy gap, crystal field splitting energy of CdP4
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    Chapter 168 ZnP4, CdP4 transport properties, field emission of CdP4
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    Chapter 169 ZnP4, CdP4 parameters of formation, dissociation and vaporization, entropy of CdP4
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    Chapter 170 CdAs4 crystal structure, physical properties
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    Chapter 171 CdP4-CdAs4 solid solutions physical properties, CdP4-CdAs4
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    Chapter 172 ZnAs, CdAs crystal structure, physical properties of ZnAs
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    Chapter 173 ZnAs, CdAs crystal structure, physical properties of CdAs
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    Chapter 174 Zinc antimonide (ZnSb) band structure, energy gap, interband transitions, Fermi surface
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    Chapter 175 Zinc antimonide (ZnSb) effective masses
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    Chapter 176 Zinc antimonide (ZnSb) crystal structure and chemical bond, lattice parameters
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    Chapter 177 Zinc antimonide (ZnSb) melting point, density, Debye temperature
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    Chapter 178 Zinc antimonide (ZnSb) electronic and thermal transport properties
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    Chapter 179 Zinc antimonide (ZnSb) refractive index
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    Chapter 180 Cadmium antimonide (CdSb) band structure, energy gap
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    Chapter 181 Cadmium antimonide (CdSb) interband energies, effective masses, Fermi surface
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    Chapter 182 Cadmium antimonide (CdSb) crystal structure and chemical bond, lattice parameters
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    Chapter 183 Cadmium antimonide (CdSb) Debye temperature, density, melting point
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    Chapter 184 Cadmium antimonide (CdSb) resistivity, carrier mobilites, thermal conductivity
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    Chapter 185 Cadmium antimonide (CdSb) thermoelectric power, piezoresistance
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    Chapter 186 Cadmium antimonide (CdSb) refractive index, dielectric constant
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    Chapter 187 Magnesium arsenide (Mg3As2) physical properties
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    Chapter 188 Solid solutions between II-V compounds ZnSb-CdSb solid solutions (Zn(x)Cd(1-x)Sb)
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    Chapter 189 Zinc and cadmium antimonide (Zn4Sb3, Cd4Sb3) lattice parameters of Zn4Sb3
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    Chapter 190 Zinc and cadmium antimonide (Zn4Sb3, Cd4Sb3) physical parameters of beta-Zn4Sb3
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    Chapter 191 Zinc and cadmium antimonide (Zn4Sb3, Cd4Sb3) lattice parameters and density of Cd4Sb3
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    Chapter 192 Zinc and cadmium antimonide (Zn4Sb3, Cd4Sb3) electronic and transport parameters of beta-Cd4Sb3
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    Chapter 193 Zinc and cadmium antimonide (Zn4Sb3, Cd4Sb3) further parameters of beta-Cd4Sb3
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    Chapter 194 Zinc and cadmium antimonide (solid solutions) electronic properties
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    Chapter 195 Zinc and cadmium phosphides properties of Zn7P10 andCd7P10
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    Chapter 196 Zinc and cadmium phosphides properties of Cd6P7
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    Chapter 197 Zinc phosphide (Zn3P2) band structure
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    Chapter 198 Zinc phosphide (Zn3P2) chemical binding energies and shift
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    Chapter 199 Zinc phosphide (Zn3P2) Schottky barrier height, work function
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    Chapter 200 Zinc phosphide (Zn3P2) magnetic properties
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    Chapter 201 Zinc phosphide (Zn3P2) Debye temperature, heat capacity, density, melting point
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    Chapter 202 Zinc phosphide (Zn3P2) parameters of vaporization, formation, dissociation
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    Chapter 203 Zinc phosphide (Zn3P2) interband transition energies, energy gap
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    Chapter 204 Zinc phosphide (Zn3P2) spin-orbit and crystal field splitting energies
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    Chapter 205 Zinc phosphide (Zn3P2) impurities and defects
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    Chapter 206 Zinc phosphide (Zn3P2) crystal structure and chemical bond, lattice parameter, thermal expansion
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    Chapter 207 Zinc phosphide (Zn3P2) sound velocities, further lattice properties
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    Chapter 208 Zinc phosphide (Zn3P2) bond length, effective charge, electronegativities, ionicity, electron affinity
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    Chapter 209 Zinc phosphide (Zn3P2) transport properties
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    Chapter 210 Zinc phosphide (Zn3P2) optical properties, dielectric constant
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    Chapter 211 Zinc arsenide (Zn3As2) band structure, energy gap
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    Chapter 212 Zinc arsenide (Zn3As2) parameters of vaporization, formation and decomposition
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    Chapter 213 Zinc arsenide (Zn3As2) spin orbit and crystal field splitting, effective masses
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    Chapter 214 Zinc arsenide (Zn3As2) impurities and defects
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    Chapter 215 Zinc arsenide (Zn3As2) crystal structure, chemical bond, lattice parameter, thermal expansion
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    Chapter 216 Zinc arsenide (Zn3As2) Debye temperature, heat capacity, density, melting point
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    Chapter 217 Zinc arsenide (Zn3As2) sound velocities, further lattice properties
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    Chapter 218 Zinc arsenide (Zn3As2) electronic and thermal transport properties
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    Chapter 219 Zinc arsenide (Zn3As2) optical properties, dielectric constant
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    Chapter 220 Zinc arsenide (Zn3As2) magnetic properties
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    Chapter 221 Cadmium phosphide (Cd3P2) band structure, energy gap
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    Chapter 222 Cadmium phosphide (Cd3P2) thermal conductivity, Lorenz number
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    Chapter 223 Cadmium phosphide (Cd3P2) magnetoresistance, thermoelectric power and other transport parameters
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    Chapter 224 Cadmium phosphide (Cd3P2) optical properties, dielectric constant
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    Chapter 225 Cadmium phosphide (Cd3P2) chemical binding energies and shifts,(x)-ray emission
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    Chapter 226 Cadmium phosphide (Cd3P2) photoluminescence, photoconductivity, laser radiation
  228. Altmetric Badge
    Chapter 227 Cadmium phosphide (Cd3P2) magnetic properties
  229. Altmetric Badge
    Chapter 228 Cadmium phosphide (Cd3P2) parameters of vaporization, condensation, dissociation, formation and decomposition
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    Chapter 229 Cadmium phosphide (Cd3P2) spin-orbit and crystal field splitting, interband transition energies
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    Chapter 230 Cadmium phosphide (Cd3P2) effective masses
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    Chapter 231 Cadmium phosphide (Cd3P2) g-factors, further band parameters
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    Chapter 232 Cadmium phosphide (Cd3P2) crystal structure and chemical bond, lattice parameters, thermal expansion
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    Chapter 233 Cadmium phosphide (Cd3P2) Debye temperature, heat capacity, density, melting point
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    Chapter 234 Cadmium phosphide (Cd3P2) sound velocities, further lattice parameters
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    Chapter 235 Cadmium phosphide (Cd3P2) bond lengths, effective charge, electronegativities and related parameters
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    Chapter 236 Cadmium phosphide (Cd3P2) carrier concentration, resistivity, carrier mobility
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    Chapter 237 Cadmium arsenide (Cd3As2) band structure, general
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    Chapter 238 Cadmium arsenide (Cd3As2) thermal expansion
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    Chapter 239 Cadmium arsenide (Cd3As2) Debye temperature, heat capacity, density, melting point
  241. Altmetric Badge
    Chapter 240 Cadmium arsenide (Cd3As2) sound velocities, further lattice properties
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    Chapter 241 Cadmium arsenide (Cd3As2) carrier concentration, resistivity, carrier mobility
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    Chapter 242 Cadmium arsenide (Cd3As2) magnetoresistiance, piezoresistance
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    Chapter 243 Cadmium arsenide (Cd3As2) thermoelectric power, further transport parameters
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    Chapter 244 Cadmium arsenide (Cd3As2) Dingle temperature, quantum oscillations
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    Chapter 245 Cadmium arsenide (Cd3As2) optical properties, dielectric constants
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    Chapter 246 Cadmium arsenide (Cd3As2) thermal conductivity, Lorenz number, thermoelectrical figure of merit
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    Chapter 247 Cadmium arsenide (Cd3As2) parameters of vaporization, heats of dissociation, formation, sublimation, fusion
  249. Altmetric Badge
    Chapter 248 Cadmium arsenide (Cd3As2) near gap valence band structure, energy gap
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    Chapter 249 Cadmium arsenide (Cd3As2) entropies, enthalpies, free energy
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    Chapter 250 Cadmium arsenide (Cd3As2) thin and amorphous films
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    Chapter 251 Cadmium arsenide (Cd3As2) some data on technical applications
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    Chapter 252 Cadmium arsenide (Cd3As2) interband and splitting band energies
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    Chapter 253 Cadmium arsenide (Cd3As2) effective masses
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    Chapter 254 Cadmium arsenide (Cd3As2) Fermi surfaces, Fermi energy
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    Chapter 862 Non-Tetrahedrally Bonded Elements and Binary Compounds I
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    Chapter 903 Non-Tetrahedrally Bonded Elements and Binary Compounds I
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Title
Non-Tetrahedrally Bonded Elements and Binary Compounds I
Published by
Springer Berlin Heidelberg, January 1998
DOI 10.1007/b71138
ISBNs
978-3-54-064583-2, 978-3-54-031360-1
Editors

O. Madelung, U. Rössler, M. Schulz

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