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    题名 作者 年代 出处 被引量
1Confined reaction inside nanotubes: New approach to mesoporous g-C3N4 photocatalysts显示文摘Xueteng Liu Fei Pang Mingyuan He Jianping Ge 2017Nano Research2017,10,11:4
2Ag3PO4 colloidal nanocrystal clusters with controllable shape and superior photocatalytic activity显示文摘像簇的 Ag < 潜水艇 class= “ a-plus-plus ” > 3 PO < 潜水艇 class= “ a-plus-plus ” > 包括 nanoparticles, trisoctahedrons,四面体和 tetrapods 的 4 nanostructures 被 Ag nanocrystals,磷酸盐阴离子和氢过氧化物的合作反应准备了。反应解决方案的酸味和碱度被调节调整 H 的氧化能力 < 潜水艇 class= “ a-plus-plus ” > 2 O < 潜水艇 class= “ a-plus-plus ” > 2 , 并且因此控制最后的形态学。是的 Ag nanocrystals 功能一位牺牲的先锋,导致像簇的 nanostructures 的产生。通过运动研究, Ag 的形成<潜水艇class=“ a-plus-plus ”> 3 PO <潜水艇class=“ a-plus-plus ”> 4 nanocrystal 簇能从 Ag 作为变换被理解到 Ag <潜水艇class=“ a-plus-plus ”> 3 PO <潜水艇class=“ a-plus-plus ”> 4 nanocrystals 由 H 帮助了<潜水艇class=“ a-plus-plus ”> 2 O <潜水艇class=“ a-plus-plus ”> 2 ,与特定的形状由 nanocrystals 的面向的附件列在后面进像簇的胶体。同样准备的 Ag <潜水艇class=“ a-plus-plus ”> 3 PO <潜水艇class=“ a-plus-plus ”> 4 nanostructures 比商业 TiO 举办更高的 photocatalytic 活动<潜水艇class=“ a-plus-plus ”> 2 和一些报导 Ag <潜水艇class=“ a-plus-plus ”> 3 PO <潜水艇class=“ a-plus-plus ”>在染料的降级的 4 microcrystals 。催化活动在顺序 nanoparticles 减少 > trisoctahedrons > 四面体 > tetrapods,当稳定性在顺序 nanoparticlesFei Pang Xueteng Liu Mingyuan He Jianping Ge 2015Nano Research2015,8,1:2
3Seed-induced synthesis of mesoporous ZSM-5 aggregatesusing tetrapropylammounium hydroxide as singletemplate 显示文摘XUETeng CHEN Li WANG Yimen 2012Microporou and Mesoporous Materials2012,156,:1
4Recent advances in synthesis strategies and solar-to-hydrogen evolution of 1T phase MS_(2)(M=W,Mo)co-catalysts显示文摘Photocatalytic water splitting is a promising strategy to produce hydrogen as a sustainable and clean energy carrier,based on abundant solar energy and semiconductor photocatalysts,and it has received extensive research and discussion over the past several decades.It is challenging,however,to achieve an efficient solar-to-hydrogen evolution process with a single particulate photocatalyst due to the weak solar spectrum harvest and the rapid recombination of photogenerated electron-hole pairs during the photocatalysis reaction.Combining semiconductors to create different co-catalysts presents a viable solution to the above issues.Recently,semiconductor photocatalysts modified by different transition metal sulfidebased co-catalysts with designed functions,especially in light absorption enhancement and chargecarrier-separation efficiency promotion,have attracted much attention.As continued breakthroughs have been made in the preparation,modification,and solar-to-hydrogen evolution application of the 1T phase MS_(2)(M=W,Mo)co-catalyst-based photocatalysis system in recent years,we believe that a comprehensive review of this kind of co-catalyst would further promote its research and development to address the energy and environmental challenges that we are currently facing.Herein,recent studies and progress are summarized on the fabrication of 1T phase MS_(2)(M=W,Mo)-based co-catalyst materials,as well as their roles and functional mechanisms for photocatalytic H;evolution.Finally,concluding perspectives on the opportunities in and challenges for the further exploration of the 1T-MS_(2)(M=W,Mo)-based solar-tohydrogen evolution system are presented.Shuo Li Jinyan Xiong Xueteng Zhu Weijie Li Rong Chen Gang Cheng 2022Journal of Materials Science & Technology2022,,6:1
5CTAB-directedsynthesisofmesoporousγ-aluminapromotedbyhydroxylcarboxylate:Theinterplay oftartrate andCTAB显示文摘YueMingbo XueTeng JiaoWenqian etal 2011SolidStateSciences2011,,13:1
6显示文摘ZHAOPeng(赵鹏) FANGHui-Jue(方慧珏) XUETeng(薛腾) WuliHuaxueXuebao0,,:1
7Facilely anchoring Cu_(2)O nanoparticles on mesoporous TiO_(2)nanorods for enhanced photocatalytic CO_(2)reduction through efficient charge transfer显示文摘Semiconductor-employed photocatalytic CO_(2) reduction has been regarded as a promising approach for environmental-friendly conversion of CO_(2) into solar fuels.Herein,TiO_(2)/Cu_(2)O composite nanorods have been successfully fabricated by a facile chemical reduction method and applied for photocatalytic CO_(2) reduction.The composition and structure characterization indicates that the Cu_(2)O nanoparticles are coupled with TiO_(2) nanorods with an intimate contact.Under light illumination,all the TiO_(2)/Cu_(2)O composite nanorods enhance the photocatalytic CO_(2)reduction.In particular,the TiO_(2)/Cu_(2)O-15%sample exhibits the highest CH_(4)yield(1.35μmol g^(-1)h^(-1)) within 4 h irradiation,and it is 3.07 and 15 times higher than that of pristine TiO_(2)nanorods and Cu_(2)O nanoparticles,respectively.The enhanced photoreduction capability of the TiO_(2)/Cu_(2)O-15%is attributed to the intimate construction of Cu_(2)O nanoparticles on TiO_(2) nanorods with formed p-n junction to accelerate the separation of photogenerated electron-hole pairs.This work provides a reference for rational design of a p-n heterojunction photocatalyst for CO_(2) photoreduction.Ge Yang Pei Qiu Jinyan Xiong Xueteng Zhu Gang Cheng 2022Chinese Chemical Letters2022,33,8:0
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