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Synthesis,Structure,and Electric Conductivity of Ferrous Tainiolite and Its Oxidative Conversion into Coarse-Grained Swellable Smectite

机译:铁质石的合成、结构、电导率及其氧化转化为粗粒溶胀蒙脱石

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摘要

Ferrous tainiolite,CsFe2Li~oSi4~tO_(10)F2,has been synthesized from the melt in gastight molybdenum crucibles.The electric conductivity has been measured by impedance spectroscopy.As compared to natural micas,which are insulators,good conductivity is observed.The layered silicate can be further modified by ion exchange,which makes it a promising host structure for sensor materials.The estimated activation energy is as low as 0.79 eV.Upon Ba~(2+)exchange for Cs~+,structural Fe~(2+)is partially oxidized(33),and the layer charge is reduced significantly,resulting in a coarse-grained but swollen(monolayer hydrate)smectite-type layered silicate.Therefore,further functionalization by pillaring will be feasible resulting in a conducting microporous material.The new material has been characterized by the analysis of chemical composition(wavelength dispersive X-ray spectroscopy and laser ablation-inductively coupled plasma-mass spectrometry),differential thermal analysis,electron microscopy,Mossbauer,UV-vis/ NIR,impedance spectroscopy,and single-crystal structure refinement(wR(F~2)= 0.0883).The structure is of the 1M polytype(C2/m)with cell parameters a = 5.277(2)k,b = 9.148(2)A,c = 10.804(2)A,and beta = 99.19(3)°.The congruent melting point was observed at 1103(±5)K.
机译:在气密钼坩埚中由熔体合成了Cs[Fe2Li]~o[Si4]~tO_(10)F2的铁质矿。电导率已通过阻抗谱法测量。与作为绝缘体的天然云母相比,具有良好的导电性。层状硅酸盐可以通过离子交换进一步改性,使其成为一种很有前途的传感器材料主体结构。估计活化能低至0.79 eV,Ba~(2+)交换为Cs~+后,结构Fe~(2+)被部分氧化(33%),层电荷显著降低,产生粗粒但膨胀的(单层水合物)蒙脱石型层状硅酸盐。因此,通过柱状结构进一步功能化将是可行的,从而产生导电的微孔材料。通过化学成分分析(波长色散X射线光谱和激光烧蚀-电感耦合等离子体质谱)、差热分析、电子显微镜、Mossbauer、紫外-可见/近红外、阻抗谱和单晶结构细化(wR(F~2)= 0.0883)对新材料进行了表征。结构为1M多型(C2/m),细胞参数a=5.277(2)k,b=9.148(2)A,c=10.804(2)A,β=99.19(3)°。在1103(±5)K处观察到全等熔点。

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