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Surface-sulfonation and fuel cell properties of phenylsilsesquioxane-based particles

机译:基于苯基钠喹甲烷颗粒的表面磺化和燃料电池性质

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An inorganic-organic hybrid of phenylsilsesquioxane-silica (PhSiO3/2-SiO2) nanoparticle was prepared by sol-gel process, and a high proton-conducting electrolyte was synthesized by surface-sulfonation of phenyl groups of the particles. Chlorosulfonic acid was used as a sulfonation agent. The PhSiO3/2-SiO2 particles are chemically stable as well as flexible. The proton conductivity of the pelletized sample reached about 10-2 S/cm at 80°C and 80% relative humidity (RH). The open circuit voltage (OCV) of the single cell prepared using the pelletized sample as an electrolyte for a H2-air fuel cell increased with increasing the RH of the cell. The maximum power density of~40 mW/cm2 and OCV of 0.9 V was obtained at 80°C and 95% RH.
机译:通过溶胶 - 凝胶工艺制备苯基硅氧烷 - 二氧化硅(PHSIO3 / 2-SiO 2)纳米粒子的无机 - 有机杂交物,通过颗粒的苯基的表面磺化合成高质子传导电解质。氯磺酸用作磺化剂。 pHSiO3 / 2-SiO 2颗粒是化学稳定的以及柔性。粒状样品的质子电导率在80℃和80%相对湿度(RH)下达到约10-2S / cm。随着电池的RH增加,使用粒化样品作为H 2空气燃料电池的电解质制备的单电池的开路电压(OCV)增加。在80℃和95%RH下获得〜40mW / cm2和0.9V的最大功率密度。

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