上海(c)具有定制孔石墨烯薄片的TEM图像。
此外,港新高地在纯净和掺杂的PtD-y晶体中观察到了与EnT过程耦合的显着PL各向异性。文献链接:片区破点https://doi.org/10.1002/anie.2020054062、片区破点ACSNano:大规模合成具有多功能石墨烯石英纤维电极北京大学刘忠范院士,刘开辉研究员等人结合石墨烯优异的电学性能和石英纤维的机械柔韧性,设计并通过强制流动化学气相沉积(CVD)制备了混杂石墨烯石英纤维(GQF)。
曾获北京市科学技术奖一等奖,为突中国化学会青年化学奖,中国青年科技奖等奖励。加快2013年获中国分析测试协会科学技术奖(CAIA)一等奖(第二获奖人)。打造2015年获何梁何利基金科学与技术进步奖。
2003年荣获教育部全国优秀博士学位论文指导教师称号,产业同年由他为学术带头人的光功能材料的设计、制备与表征获基金委创新研究群体资助。近期代表性成果:发展1、发展Angew: 调节单原子掺杂二氧化钛中晶格氧的电荷转移以HER中科院化学研究所姚建年院士和北京交通大学王熙教授分别以TM1/TiO2和HER为模型催化剂和模型反应,系统地研究了催化作用下的电荷转移。
本内容为作者独立观点,上海不代表材料人网立场。
1993年6月回北京大学任教,港新高地同年晋升教授。片区破点参考文献1.XunYuan,LengLengChng,JinhuaYang,JackieY.Ying,Miscible-Solvent-AssistedTwo-PhaseSynthesisofMonolayer-Ligand-ProtectedMetalNanoclusterswithVariousSizes.Adv.Mater.2020,1906063.2.ZhenHan,Xi-YanDong,PengLuo,SiLi,Zhao-YangWang,Shuang-QuanZang,ThomasC.W.Mak,Ultrastableatomicallyprecisechiralsilverclusterswithmorethan95%quantumefficiency.Sci.Adv.2020;6:eaay0107.3.YongboSong,YingweiLi,HaoLi1,FengKe,JiXiang,ChuanjunZhou,PengLi,ManzhouZhu,RongchaoJin,AtomicallyresolvedAu52Cu72(SR)55 nanoalloyrevealsMarksdecahedrontruncationandPenrosetilingsurface.Nat.Commun.2020,11,478.4.ZhennanWu,QiaofengYao,OsburgJinHuangChai,NanDing,WenXu,JianpingXie,ShuangquanZang,UnravelingtheImpactofGold(I)-ThiolateMotifsontheAggregation-InducedEmissionofGoldNanoclusters.Angew.Chem.Int.Ed.DOI:10.1002/anie.2019166755.XiaoCai,WeigangHu,ShunXu,DanYang,MingyangChen,MiaoShu,RuiSi,WeipingDing,YanZhu,StructuralRelaxationEnabledbyInternalVacancyAvailableina24-atomGoldClusterReinforcesCatalyticReactivity.J.Am.Chem.Soc.2020,142,9,4141-4153.6.YapeiYun,HongtingSheng,KangBao,LiXu,YuZhang,DidierAstruc,ManzhouZhu,DesignandRemarkableEfficiencyoftheRobustSandwichClusterCompositeNanocatalystsZIF-8@[email protected],142,9,4126-4130.7.Zong-JieGuan,FengHu,Jiao-JiaoLi,Zhao-RuiWen,Yu-MeiLin,Quan-MingWang,IsomerizationinAlkynyl-ProtectedGoldNanoclusters.J.Am.Chem.Soc.2020,142,2995−3001.8.YanZhao,ShengliZhuang,LingwenLiao,ChengmingWang,NanXia,ZibaoGan,WanmiaoGu,JinLi,HaitengDeng,ZhikunWu,ADualPurposeStrategytoEndowGoldNanoclusterswithBothCatalysisActivityandWaterSolubility.J.Am.Chem.Soc.2020,142,973−977.9.JiongLu,ChuanhaoYao,Cong-QiaoXu,In-HyeokPark,MengZhao,ZiyuZhu,JingLi,XiaoHai,HanyanFang,YongZhang,GennevieveMacam,JinghuaTeng,LinLi,Qing-HuaXu,Feng-ChuanChuang,JunPengLu,ChenliangSu,JunLi,Giantemissionenhancementofsolid-stategoldnanoclustersviasurfaceengineering.Angew.Chem.Int.Ed.DOI:10.1002/anie.20200103410.YangDeng,ZhenZhang,PeiyaoDu,XingmingNing,YueWang,DongxuZhang,JiaLiu,ShoutingZhang,XiaoquanLu,BridgingUltrasmallAuClustersintothePoresofaCovalentOrganicFrameworkforEnhancedPhotostabilityandPhotocatalyticPerformance.Angew.Chem.Int.Ed.DOI:10.1002/anie.201916154.11.YuWang,Xiao-HeLiu,QiankunWang,MartinQuick,SergeyKovalenko,Qing-YunChen,NorbertKoch,NicolaPinna,Insightsintochargetransferattheatomicallyprecisenanocluster/semiconductorinterfaceforin-depthunderstandingtheroleofnanoclusterinphotocatalyticsystem.Angew.Chem.Int.Ed.DOI:10.1002/anie.201915074.12.Bao-LiangHan,ZhenLiu,LeiFeng,ZhiWang,RakeshKumarGupta,ChristineM.Aikens,Chen-HoTung,DiSun,PolymorphisminAtomicallyPreciseCu23NanoclusterIncorporatingTetrahedral[Cu4]0J.Am.Chem.Soc.2020,142,12,5834-5841.本文由 weininan供稿。
更有趣的是,为突缩短Au(I)-SR成分的长度可以改变团簇发光的释放动力学过程(从AIE型磷光到Au(0)核态荧光)。原子级精度结构分析,加快结合光物理和计算分析表明,研究者们在银团簇体系中观察到了热活化延迟荧光,这也高PLQY的主要原因。
这项工作不仅展示了合成铜纳米团簇的梯度还原策略的独创性,打造而且对于如何获得精确可调的多态铜纳米团簇提供了参考价值。产业天津大学的卢小泉教授团队制备了一种在其孔中用巯基链(-SH)修饰的二维COF。
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