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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Si-29, Ti-47, Ti-49 and Pt-195 solid state MAS NMR spectroscopic investigations of ternary silicides TPtSi, germanides TPtGe (T = Ti, Zr, Hf) and stannide TiPtSn
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Si-29, Ti-47, Ti-49 and Pt-195 solid state MAS NMR spectroscopic investigations of ternary silicides TPtSi, germanides TPtGe (T = Ti, Zr, Hf) and stannide TiPtSn

机译:三元硅化物TPtSi,锗化物TPtGe(T = Ti,Zr,Hf)和锡化TiPtSn的Si-29,Ti-47,Ti-49和Pt-195固态MAS NMR光谱研究

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Eight ternary tetrelides TPtX (T = Ti, Zr, Hf; X = Si, Ge, Sn) were synthesized from the elements by arcmelting and subsequent annealing. TiPtSi, ZrPtSi, ZrPtGe, HfPtSi and HfPtGe crystallize with the orthorhombic TiNiSi type structure, in the space group Pnma. The structures of HfPtSi (a = 654.44(9), b = 387.97(6), c = 750.0(1) pm, wR(2) = 0.0592, 411 F-2 values, 20 variables) and HfPtGe (a = 660.36(7), b = 395.18(4), c = 763.05(8) pm, wR(2) = 0.0495, 430 F-2 values, 20 variables) were refined from single crystal X-ray diffractometer data. TiPtSn adopts the cubic MgAgAs type. TiPtGe is dimorphic with a TiNiSi type high-temperature modification which transforms to cubic LT-TiPtGe (MgAgAs type). All phases were investigated by high resolution Si-29, Ti-47, 4(9T)i and Pt-195 solid state MAS NMR spectroscopy. In the cubic compounds, the Ti-47/49 NMR signals are easily detected owing to the absence of quadrupolar broadening effects. The Pt-195 resonances of the orthorhombic compounds are characterized by strongly negative isotropic Knight shifts and large Knight shift anisotropies, whereas positive isotropic Knight shifts and no anisotropies are observed for the cubic compounds. These results indicate that the phase transition in TiPtGe is associated with dramatic changes in the electronic properties. Within each group of isotypic compounds the isotropic Si-29, Ti-47/49 and Pt-195 Knight shifts show systematic dependences on the transition metal or tetrel atomic number, suggesting that the numerical values are influenced by the electronegativities of the metallic (or metalloid) neighbours.
机译:通过电弧熔化和随后的退火,由这些元素合成了八种三元四价卤化物TPtX(T = Ti,Zr,Hf; X = Si,Ge,Sn)。 TiPtSi,ZrPtSi,ZrPtGe,HfPtSi和HfPtGe在空间群Pnma中以正交的TiNiSi型结构结晶。 HfPtSi(a = 654.44(9),b = 387.97(6),c = 750.0(1)pm,wR(2)= 0.0592,411 F-2值,20个变量)的结构和HfPtGe(a = 660.36( 7),b = 395.18(4),c = 763.05(8)pm,wR(2)= 0.0495、430 F-2值,20个变量)是从单晶X射线衍射仪数据中提炼出来的。 TiPtSn采用立方MgAgAs型。 TiPtGe是具有TiNiSi型高温修饰物的双晶,可转变为立方晶LT-TiPtGe(MgAgAs型)。所有相均通过高分辨率Si-29,Ti-47、4(9T)i和Pt-195固态MAS NMR光谱进行了研究。在立方化合物中,由于没有四极扩宽效应,因此很容易检测到Ti-47 / 49 NMR信号。斜方晶系化合物的Pt-195共振的特征是各向同性奈特位移强烈负且奈特位移较大,而立方化合物则各向同性奈特正位移且没有各向异性。这些结果表明,TiPtGe中的相变与电子性质的急剧变化有关。在各组同型化合物中,各向同性的Si-29,Ti-47 / 49和Pt-195奈特位移显示出对过渡金属或锡金属原子序数的系统依赖性,这表明数值受金属(或金属)电负性的影响。非金属)的邻居。

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