标题: 新颖四元硒化物TMxSn7-xIn10Se22 (TM = Fe, Co, Ru) 与 Ag3Ge2.57Sb7.35Se15的合成,鉴定与特性分析
Synthesis and Characterization of Quaternary Selenide: TMxSn7-xIn10Se22 (TM = Fe, Co, Ru) and Ag3Ge2.57Sb7.35Se15
作者: 陈俊超
李积琛
应用化学系硕博士班
关键字: 硒化物;热电材料;chalcogenide;thermoelectric material
公开日期: 2011
摘要: 在本篇论文中,我们以固态烧结法合成四元硒化物,并藉由X光单晶绕射仪解析其结构。此外,我们也研究了这些化合物的物理性质与结构特征。
第一部分中,我们主要探讨过渡金属的存在对于结构形成有一定的帮助。其结构与 Sn5.5In11S22为相同结构,为单斜晶系,空间群为 P2/m(No.10)。晶体结构由三种不同的单元所组成:(1)由 M4-M5 及 M6-M7 各自形成之菱形柱状单元;(2) M8-M9 形成一平面层状单元;(3) M1-M3 十面体单元。由磁化率的量测与计算我们推测 Co 为正三价。藉由导电度的量测均可发现三种硒化物皆具有导电度随着温度升高而升高的现象,说明三种化合物皆为半导体。Ru0.7Sn6.31In9.99Se22 的 Seebeck 系数量测可得其为一 n-type 半导体。由理论计算也可得到具有狭窄能隙的电子结构及不同金属与Se之间的键结特性。
而在第二部分里,我们合成且得到一单晶 Ag3Ge2.57Sb7.35Se15。此化合物为单斜晶系,空间群为Cm(No. 8),其晶格常数为 a = 13.5098(10) Å, b = 4.0844(3) Å, c = 26.329(2) Å, β = 104.8370(10)°, V = 1404.4(2) Å3, Z = 2, 及 R = 0.043,属于 Lillianite 结构并可以 L(10,1) 表示。我们藉由两颗不同组成的单晶,经过些许的调整之后,我们以一空间中直线方程式来表示此化合物的纯相范围。并且藉由粉末绕射的帮助,我们可以订出此化合物为纯相的范围。纯相样品进行导电度的量测可得此化合物在纯相范围的能隙是落在0.51 eV to 0.71 eV之间。
The thesis contains two parts. In part (1), four ternary and quaternary selenides TMxSn7-xIn10Se22 (TM = Fe, Co, Ru) were synthesized and the effect of transition metals to the formation of the target structure was studied. The as-synthesize phase is isostructural to Sn5.5In11S22 that crystalized in monoclinic system with space group P2/m(No.10). The crystal structure contains three building units of rhombus (M4-M5 and M6-M7), planar (M8-M9) and dodecahedrons (M1-M3). The oxidation state of Co is +3, which was supported by magnetic susceptibility analysis. Electrical conductivity measurements revealed semiconducting property for all phases. The Seebeck measurement for Ru0.7Sn6.31In9.99Se22 exhibits n-type semiconducting property. Theoretical calculations show narrow band gap and bonding characters of different metals and Se. In part (2), we obtained a new quaternary selenide Ag3Ge2.57Sb7.35Se15, which crystallizes in the monoclinic space group Cm (No.8) with a = 13.5098(10) Å, b = 4.0844(3) Å, c = 26.329(2) Å, β = 104.837(1)°, V = 1404.4(2) Å3, Z = 2, and R = 0.043. The crystal structure contains two slabs that can be classified as the Lillianite homologous series noted as L (10, 1). A phase width was obtained with the help of two isostructural compounds with different compositions and powder X-ray diffraction. The electrical conductivity of pure phase sample shows narrow band gap in the range of 0.51 eV to 0.71 eV. 
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT079825532
http://hdl.handle.net/11536/47621
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