A general bottom-up synthesis of CuO-based trimetallic oxide mesocrystal superstructures for efficie

来源 :纳米研究(英文版) | 被引量 : 0次 | 上传用户:liongliong478
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
Mesocrystals,the non-classical crystals with highly ordered nanopartide superstructures,have shown great potential in many applications because of their newly collective properties.However,there is still a lack of a facile and general synthesis strategy to organize and integrate distinct components into complex mesocrystals,and of reported application for them in industrial catalytic reactions.Herein we report a general bottom-up synthesis of CuO-based trimetallic oxide mesoaystals (denoted as CuO-M1Ox-M2O,where M1 and M2 =Zn,In,Fe,Ni,Mn,and Co) using a simple precipitation method followed by a hydrothermal treatment and a topotactic transformation via calcination.When these mesocrystals were used as the catalyst to produce trichlorosilane (TCS) via Si hydrochlorination reaction,they exhibited excellent catalytic performance with much increased Si conversion and TCS selectivity.In particular,the TCS yield was increased 19-fold than that of the catalyst-free process.The latter is the current industrial process.The efficiently catalytic property of these mesocrystals is attributed to the formation of well-defined nanoscale heterointerfaces that can effectively facilitate the charge transfer,and the generation of the compressive and tensile strain on CuO near the interfaces among different metal oxides.The synthetic approach developed here could be applicable to fabricate versatile complicated metal oxide mesocrystals as novel catalysts for various industrial chemical reactions.
其他文献
一等奖  《招远雾淞》图/乔光先  《昆嵛之秋》图/李丰艳  二等奖  组图《流金岁月》图/徐建波  组图《风雪中的劳动者》图/柳艳梅  《雨中环卫工》刘福轩  《雪夜》图/台本敏  《添丁仪式》  图/王仁山  三等奖  《仙境起航》图/王常川  《昆嵛美景》图/王忠军  《黄县布老虎》图/慕曙光  《人龙合一》图/陈燕  《焊接》图/汤芝娜  《丰收》图/王淑云  《淘金小镇游人醉》图/陈杰 
期刊
2014年“两会”前夕,中央领导人听取有关部门工作汇报时强调京津冀协同发展是国家战略,要在各个方面坚持互补,实现地区之间的互利共赢。在京津冀协同化发展的背景下,交通一体