BUFFER_LAYER

作品数:373被引量:330H指数:6
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Boosting charge extraction and efficiency of inverted perovskite solar cells through coordinating group modification at the buffer layer/cathode interface
《Nano Research》2025年第1期415-423,共9页Zhiqing Liang Ziqiu Ren Ziyu Wang Nan Yan Ling Li Bo Zhang Yanlin Song 
supported financially by the National Key R&D Program of China(No.2023YFE0111500);the National Natural Science Foundation of China(Nos.62204222,52103237,52321006,T2394480 and T2394484).
In inverted perovskite solar cells (PSCs),effective modification of the interface between the metalcathode and electron transport layer (ETL) is crucial forachieving high performance and stability. Herein, sulfonatedb...
关键词:perovskite solar cells buffer layer bathocuproine disulfonate coordination group modification electron transport layer(ETL)-cathode interface 
A generalized synthesis method for freestanding multiferroic twodimensional layered supercell oxide films via a sacrificial buffer layer
《Nano Research》2023年第7期10559-10566,共8页Jianan Shen Benson Kunhung Tsai Ke Xu Anyu Shang James PBarnard Yizhi Zhang Rahul Tripathi Zhihong Chen Xinghang Zhang Haiyan Wang 
This work was supported by the U.S.Office of Naval Research(ONR,N00014-20-1-2600);J.B.acknowledges the support from the Laboratory Directed Research and Development program at Sandia National Laboratories,a multi-mission laboratory managed and operated by National Technology and Engineering Solutions of Sandia,LLC,a wholly owned subsidiary of Honeywell International,Inc.,for the U.S.Department of Energy's National Nuclear Security Administration under contract DE-NA-003525;The high-resolution STEM imaging work was funded by the U.S.National Science Foundation(DMR-2016453);The article describes objective technical results and analysis.Any subjective views or opinions that might be expressed in the article do not necessarily represent the views of the U.S.Department of Energy or the United States Government。
Multiferroics are an intriguing family of materials due to the simultaneous presence of two ferroic orderings,namely,ferroelectricity and ferromagnetism.They are scientifically and technologically important and have n...
关键词:MULTIFERROICS freestanding films wet-transfer SAO sacrificial layer recyclable substrates sustainable 
Boosting fast interfacial Li^(+)transport in solid-state Li metal batteries via ultrathin Al buffer layer被引量:2
《Nano Research》2023年第5期6825-6832,共8页Shengnan Zhang Qing Sun Guangmei Hou Jun Cheng Linna Dai Jianwei Li Lijie Ci 
High-level Talents’Discipline Construction Fund of Shandong University(No.31370089963078);School Research Startup Expenses of Harbin Institute of Technology(Shenzhen)(No.DD29100027).
Na superionic conductor(NASICON)-type Li_(1.5)Al_(0.5)Ge_(0.5)P_(3)O_(12)(LAGP)solid state electrolytes(SSEs)have attracted significant interests thanks to the prominent ionic conductivity(>10^(–4)S·cm^(–1))at room...
关键词:Li_(1.5)Al_(0.5)Ge_(0.5)P_(3)O_(12) solid-state battery Li+transport interfacial modification Al buffer 
Flexible Hf_(0.5)Zr_(0.5)O_(2)ferroelectric thin films on polyimide with improved ferroelectricity and high flexibility被引量:4
《Nano Research》2022年第4期2913-2918,共6页Yuting Chen Yang Yang Peng Yuan Pengfei Jiang Yuan Wang Yannan Xu Shuxian Lv Yaxin Ding Zhiwei Dang Zhaomeng Gao Tiancheng Gong Yan Wang Qing Luo 
This work was supported in part by the National Natural Science Foundation of China(Nos.61922083,61804167,61834009,61904200,and 61821091);in part by the Strategic Priority Research Program of the Chinese Academy of Sciences(No.XDB44000000).
Flexible memory devices are promising for information storage and data processing applications in portable,wearable,and smart electronics operating under curved conditions.In this work,we realized high-performance fle...
关键词:ferroelectric Hf_(0.5)Zr_(0.5)O_(2)(HZO) Al_(2)O_(3)buffer layer FLEXIBLE 
Efficient fully blade-coated perovskite solar cells in air with nanometer-thick bathocuproine buffer layer被引量:2
《Nano Research》2021年第4期1034-1042,共9页Sergio Castro-Hermosa Luana Wouk Izabela Silva Bicalho Luiza de Queiroz Correa Bas de Jong Lucio Cina Thomas M.Brown Diego Bagnis 
We acknow ledge Petroleo Brasileiro S.A.(PETROBRAS)under the project“Research and Development of Perovskite form ulations for production of printed photovoltaic cells and modulesM for funding.S.C.-H and T.M.B.acknowledge to have received funding from Departamen to del Huila’s Scholarship Program No.677 from Huila,Colombia,the European Unions H orizon 2020 research and innovation program under grant agreement no.763989 APOLO,Lazio Region“Gruppi di Ricerca”under project no.85-2017-15373(SIROH)according to L.R.Lazio 13/08,and the Italian Ministry o f University and Research(MIUR)through the PRIN2017 BOOSTER(project n.2017YXX8AZ)grant.This publication reflects only the authors' views and the funding agencies are not liable for any use that may be made of the inform ation contained therein.We thank to Gabriela Amorim for solar cell encapsulation.We thank engineering departm ent at CSEM Brasil for developing the nitrogen blower system.We thank to Centro de Microscopia,Laboratorio de Caracterizacao e de Processam ento de Nanom ateriais from Federal University of M inas Gerais,for providing the experimental facilities and Prof.Wagner da Nova Mussel for XRD results.
Fully printed perovskite solar cells(PSCs)were fabricated in air with all constituent layers,except for electrodes,deposited by the blade coating technique.The PSCs incorporated,for the first time,a nanometer-thick pr...
关键词:PEROVSKITE BUFFER bathocuproine(BCP) blade coating printed electronics 
Solution-derived poly(ethylene glycol)-TiOx nanocom- posite film as a universal cathode buffer layer for enhancing efficiency and stability of polymer solar cells被引量:1
《Nano Research》2015年第2期456-468,共13页Zhigang Yin Qingdong Zheng Shan-Ci Chen Jiaxin Li Dongdong Cai Yunlong Ma Jiajun Wei 
Highly efficient and stable polymer solar cells (PSCs) have been fabricated by adopting solution-derived hybrid poly(ethylene glycol)-titanium oxide (PEG-TiOx) nanocomposite films as a novel and universal cathod...
关键词:titanium oxide NANOCOMPOSITES energy conversion organic solar cells interface engineering device stability 
Selective Growth of ZnO Nanorods on SiO2/Si Substrates Using a Graphene Buffer Layer
《Nano Research》2011年第5期440-447,共8页Won Mook Choi Kyung-Sik Shin Hyo Sug Lee Dukhyun Choi Kihong Kim Hyeon-Jin Shin Seon-Mi Yoon Jae-Young Choi Sang-Woo Kim 
A promising strategy for the selective growth of ZnO nanorods on SiO2/Si substrates using a graphene buffer layer in a low temperature solution process is described. High densities of ZnO nanorods were grown over a la...
关键词:GRAPHENE ZnO nanorod HETEROJUNCTION selective growth solution 
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