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Structure manufacturing of proton-conducting organic–inorganic hybrid silicophosphite membranes by solventless synthesis

机译:无溶剂合成结构制备质子传导有机-无机杂化亚磷酸硅膜

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摘要

We have developed a new class of proton-conducting organic–inorganic hybrid silicophosphite membranes, produced by ethanol condensation of organically modified alkoxysilanes and anhydrous vinylphosphonic acid under solventless, catalyst-free, low-temperature, one-pot conditions. The membranes synthesized in this study are crack-free, large, and flexible, and they exhibit good thermal stability up to intermediate temperatures (~218 °C). Structural analyses using [29]Si and [31]P nuclear magnetic resonance spectroscopy and infrared measurements revealed that ethanol condensation produced an inorganic alternating copolymer structure, Si–O–P, with a phosphole group, and successive polymerization between vinyl and/or methacryl groups enabled these structures to connect with each other. In this way, it is possible to achieve structure manufacturing of inorganic–organic networks. The proton conductivities of the hybrids are as high as 5.2 × 10[−3] S/cm at 85 °C under 80% relative humidity.
机译:我们开发了新型的质子传导有机-无机杂化亚磷酸硅膜,该膜是在无溶剂,无催化剂,低温,一锅条件下,通过有机改性的烷氧基硅烷与无水乙烯基膦酸的乙醇缩合制得的。这项研究中合成的膜无裂纹,大而柔软,并且在中等温度(〜218°C)下仍显示出良好的热稳定性。使用[29] Si和[31] P核磁共振波谱和红外测量的结构分析显示,乙醇缩合产生了具有磷酸基团的无机交替共聚物结构Si–O–P,并在乙烯基和/或甲基丙烯酸之间连续聚合组使这些结构可以相互连接。这样,可以实现无机-有机网络的结构制造。杂化物的质子电导率在相对湿度为80%,85°C时高达5.2×10 [-3] S / cm。

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