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两步水解法制备条件对TiO_2/SiO_2混合氧化物孔结构的影响
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作者 秦俊岭 杨景辉 +1 位作者 陈雪梅 於定华 《化学世界》 CAS CSCD 北大核心 2004年第7期339-341,364,共4页
采用两步水解法制备了高比表面积的TiO2/SiO2混合氧化物,利用TGA和低温N2的吸附对粉体进行了表征。研究了预水解阶段加水量及醇洗、水洗过程对粉体孔结构的影响,发现加水量较少时,孔径分布变宽,水洗样品的比表面积和孔径均比醇洗样品的大。
关键词 两步水解法 TiO2/SiO2混合氧化物 孔结构
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La_(1-x)Ca_xMn_(1-y)Al_yO_3 perovskites as efficient catalysts for two-step thermochemical water splitting in conjunction with exceptional hydrogen yields 被引量:3
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作者 Lulu Wang Mohammad Al‐Mamun +3 位作者 Porun Liu Yun Wang Hua Gui Yang Huijun Zhao 《Chinese Journal of Catalysis》 EI CSCD 北大核心 2017年第6期1079-1086,共8页
Solar‐driven thermochemical water splitting represents one efficient route to the generation of H2as a clean and renewable fuel.Due to their outstanding catalytic abilities and promising solar fuel production capacit... Solar‐driven thermochemical water splitting represents one efficient route to the generation of H2as a clean and renewable fuel.Due to their outstanding catalytic abilities and promising solar fuel production capacities,perovskite‐type redox catalysts have attracted significant attention in this regard.In the present study,the perovskite series La1‐xCaxMn1‐yAlyO3(x,y=0.2,0.4,0.6,or0.8)was fabricated using a modified Pechini method and comprehensively investigated to determine the applicability of these materials to solar H2production via two‐step thermochemical water splitting.The thermochemical redox behaviors of these perovskites were optimized by doping at either the A(Ca)or B(Al)sites over a broad range of substitution values,from0.2to0.8.Through this doping,a highly efficient perovskite(La0.6Ca0.4Mn0.6Al0.4O3)was developed,which yielded a remarkable H2production rate of429μmol/g during two‐step thermochemical H2O splitting,going between1400and1000°C.Moreover,the performance of the optimized perovskite was found to be eight times higher than that of the benchmark catalyst CeO2under the same experimental conditions.Furthermore,these perovskites also showed impressive catalytic stability during two‐step thermochemical cycling tests.These newly developed La1‐xCaxMn1‐yAlyO3redox catalysts appear to have great potential for future practical applications in thermochemical solar fuel production. 展开更多
关键词 Two‐step thermochemical route Water splitting Solar fuel Perovskite‐type redox catalyst Hydrogen production
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