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10篇 您的检索式:作者名="Weiwei D"
    题名 作者 年代 出处 被引量
1Out of southern East Asia: the natural history of domestic dogs across the world显示文摘Guo-Dong Wang Weiwei Zhai He-Chuan Yang Lu Wang LioZhong Yan-Hu Liu Ruo-Xi Fan Ting-Ting Yin Chun-Ling Zhu Andrei D Poyarkov David M Irwin Marjo K Hytonen Hannes Lohi Chung-I Wu Peter Savolainen Ya-Ping Zhang 2016Cell Research2016,26,1:16
2Synthesis and solid state NMR structural characterization of 13C-la- beled graphite oxide显示文摘Cai Weiwei Piner R D Stadermann F J 2008Science2008,321,:1
3Compact multiplexing of monodisperse electrosprays显示文摘Weiwei D C Mike W Brian M 2009Aerosol Science2009,40,10:1
4Increase of electrospray throughput using multiplexed microfabricated sources for the scalable generation of monodisperse droplets显示文摘Weiwei D James F Klemic Xiaohui Li 2006Aerosol Science2006,37,6:1
5Liquid fuel microeombustor using mierofabricated multiplexed eleetrospray sources 显示文摘Weiwei D Klemic J F 2007Combustion Institute2007,31,2:1
6Influence of space charge on the scale-up of multiplexed electrosprays 显示文摘Weiwei D Gomez A 2007Aerosol Science2007,38,10:1
7Exfolia- tion of graphite oxide in propylene carbonate and thermal reduction of the resulting graphene oxide platelets显示文摘ZHU Yanwu STOLLER M D CAI Weiwei 2010ACS Nano2010,4,2:1
8Synthe- sis and solid-state nmr structural characterization of 13c-labeled graphite oxide显示文摘Cai Weiwei Piner Richard D Stadermann Frank J 2008Science2008,321,5897:1
9Fused-ring induced end-on orientation in conjugated molecular dyads toward efficient single-component organic solar cells显示文摘The molecular orientations of conjugated materials on the substrate mainly include edge-on,face-on,and end-on.Edge-on and face-on orientations have been widely observed,while end-on orientation has been rarely reported.Since in organic solar cells(OSCs)charge transport is along the vertical direction,end-on orientation with conjugated backbones perpendicular to the substrate is recognized as the ideal microstructure for OSCs.In this work,we for the first time obtained the preferential end-on orientation in a conjugated molecular dyad that contains a conjugated backbone as donor and perylene bisimide side units as acceptor.This was realized by introducing a fused-ring structure to replace linear terthiophenes with conjugated backbones,yielding F-MDPBI and L-MDPBI respectively.Surprisingly,a shifting trend of the molecular orientation from dominating edge-on in L-MDPBI to preferential end-on in F-MDPBI was observed.As a consequence,vertical charge carrier mobilities in F-MDPBI are one order of magnitude higher than those with preferential edge-on orientation,so single-component OSCs based on this molecular dyad as a single photoactive layer provided a power conversion efficiency of 4.89% compared to 1.70% based on L-MDPBI with preferential edge-on orientation.Dongdong Xia Shengxi Zhou Wen Liang Tan Safakath Karuthedath Chengyi Xiao Chaowei Zhao Frédéric Laquai Christopher R.McNeill Weiwei Li 2023Aggregate2023,4,2:0
10Alkyl-thiophene-alkyl linkers to construct double-cable conjugated polymers for single-component organic solar cells显示文摘In this work,semirigid linkers of the alkyl-thiophene-alkyl structure are developed to construct double-cable polymers.Three alkyl units,propyl(C3H6),hexyl(C6H12),and dodecyl(C12H24),are applied as semirigid linkers,yielding three double-cable polymers:PBC6-T,PBC12-T,and PBC24-T,respectively.PBC12-T which uses C6H12-thiophene-C6H12 linkers is found to exhibit the best device efficiency of 5.56%,while PBC6-T and PBC24-T with shorter or longer linkers yield device efficiencies of only 2.65%and 1.09%in single-component organic solar cells(SCOSCs).Further studies reveal that PBC12-T exhibits higher crystallinity and improved charge transport,resulting in better efficiencies.Our work provides an approach to construct double-cable conjugated polymers with long alkyl linkers,and it shows the importance of the linker length for the photovoltaic performance of SCOSCs.Wenbin Lai Safakath Karuthedath Chengyi Xiao Lei Meng Frédéric Laquai Weiwei Li Yongfang Li 2024Chinese Chemical Letters2024,35,1:0
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