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首页> 外文期刊>International Journal of Quantum Chemistry >Structures and conductivities of the quaternary A/Bi/Cu/S phases KBi2CuS4 and A(3)Bi(5)Cu(2)S(10) (A=Rb, Cs)
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Structures and conductivities of the quaternary A/Bi/Cu/S phases KBi2CuS4 and A(3)Bi(5)Cu(2)S(10) (A=Rb, Cs)

机译:四元A / Bi / Cu / S相KBi2CuS4和A(3)Bi(5)Cu(2)S(10)的结构和电导率(A = Rb,Cs)

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摘要

The compounds KBi2CuS4, Cs3Bi5Cu2S10, and Rb3Bi5Cu2S10 were prepared by stoichiometric reactions of the corresponding alkali-metal sulfides with Bi, Cu, and S at 1123 K. KBi2CuS4 crystallizes as a racemic twin in space group Cmc2(1) of the orthorhombic system with four formula units in a cell of dimensions a = 4.0273(8), b = 13,770(3), c = 14.259(3) Angstrom at 153 K; A(3)Bi(5)Cu(2)S(10) (A = Cs or Rb) are isostructural and crystallize in a new structure type in space group Pnnm with two formula units in cells of dimensions a = 14.571(3), b = 17,819(4), 4.0686(8) Angstrom for Rb3Bi5Cu2S10 and a = 15.041(3), b = 17,994(3), c = 4.0973(8) Angstrom for Cs3Bi5Cu2S10 at 153 K. These are channel structures with the alkali-metal cations located in channels formed by edge sharing of distorted Bi octahedra and distorted Cu tetrahedra. Electrical conductivity measurements on KBi2CuS4 and Rb3Bi5Cu2S10 indicate that both materials are semiconducting. The conductivity of KBi2CuS4 is two orders of magnitude higher than that of Rb3Bi5Cu2S10 at room temperature. KBi2CuS4 undergoes a transition from an n- to a p-type semiconductor at 210 K as determined by thermopower measurements, (C) 2000 Academic Press. [References: 33]
机译:化合物KBi2CuS4,Cs3Bi5Cu2S10和Rb3Bi5Cu2S10通过相应的碱金属硫化物与Bi,Cu和S在1123 K的化学计量反应制备.KBi2CuS4结晶为正交晶系Cmc2(1)的空间群Cmc2(1)中的外消旋孪晶。在153 K时尺寸为a = 4.0273(8),b = 13,770(3),c = 14.259(3)埃的像元中的公式单位; A(3)Bi(5)Cu(2)S(10)(A = Cs或Rb)是同构结构,并在空间群Pnnm中以新的结构类型结晶,在尺寸为a = 14.571(3)的单元格中具有两个公式单元,对于Rb3Bi5Cu2S10,b = 17,819(4),4.0686(8)埃,对于153 K,Cs3Bi5Cu2S10,a = 15.041(3),b = 17,994(3),c = 4.0973(8)埃。这些是带有碱的通道结构-金属阳离子位于扭曲的Bi八面体和扭曲的Cu四面体的边缘共享形成的通道中。在KBi2CuS4和Rb3Bi5Cu2S10上的电导率测量表明,这两种材料都是半导体。在室温下,KBi2CuS4的电导率比Rb3Bi5Cu2S10的电导率高两个数量级。通过热功率测量确定,KBi2CuS4在210 K时经历了从n型到p型半导体的转变,(C)2000 Academic Press。 [参考:33]

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