ENERGY-TRANSFER

作品数:23被引量:22H指数:2
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相关期刊:《Chinese Journal of Polymer Science》《Chinese Physics B》《CSEE Journal of Power and Energy Systems》《Chinese Physics Letters》更多>>
相关基金:国家自然科学基金广东省自然科学基金中国博士后科学基金国家重点基础研究发展计划更多>>
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Energy-Transfer in CsPbBr_(3) Nanocrystals:Sensitization of Porphyrin Triplets
《Chinese Journal of Chemical Physics》2024年第5期632-637,I0059-I0062,I0100,共11页Yinjie Lu Zongwei Chen 
This work is supported by the National Natural Science Foundation of China(No.21803070).
Sensitizing molecular triplets by colloidal nanocrystals via triplet energy transfer is important for applications such as upconversion or organic synthesis.Typically two step triplet energy transfer(TET)are included ...
关键词:Triplet energy transfer CsPbBr_(3)nanocrystal Metalloporphyrin derivative Luminescent solar concentrators 
Engineering Exciton-Phonon Interactions for Suppressing Nonradiative Energy Loss in Energy-Transfer-Initiated Photocatalysis
《CCS Chemistry》2023年第1期234-244,共11页Hui Wang Sen Jin Aolei Wang Xiang Jiang Wenxiu Liu Xiaodong Zhang Wensheng Yan Kuai Yu Jin Zhao Yi Xie 
Thisworkwas supported by the National Key R&DProgram of China(no.2019YFA0210004);the Strategic Priority Research Program of Chinese Academy of Sciences(no.XDB36000000);the National Natural Science Foundation of China(nos.21922509,21905262,21890754,T2122004,9216310512074266,11620101003,11974322,U2032212,and U2032160);the Anhui Provincial Natural Science Foundation(no.2108085J07);the University Synergy Innovation Program of Anhui Province(nos.GXXT-2020-005 and GXXT-2021-020);the Science and Technology Project of Shenzhen(grant no.20200802180159001).
The prevalent excitonic effects in low-dimensional semiconductors enable energy-transfer-initiated photocatalytic solar-to-chemical energy conversion.However,the generally strong interactions between excitons and latt...
关键词:PHOTOCATALYSIS exciton-phonon interaction nonradiative decays energy transfer 
Surface modification of ZnIn_(2)S_(4)layers to realize energy-transfer-mediated photocatalysis
《National Science Review》2022年第10期114-119,共6页Xianshun Sun Xiao Luo Sen Jin Xiaodong Zhang Hui Wang Wei Shao Xiaojun Wu Yi Xie 
the National Key R&D Program of China(2019YFA0210004);the Strategic Priority Research Program of the Chinese Academy of Sciences(XDB36000000);the National Natural Science Foundation of China(21922509,92163105,T2122004,21905262,21890754,U2032212 and U2032160);the University Synergy Innovation Program of Anhui Province(GXXT-2020-005);the fellowship of China Postdoctoral Science Foundation(2020M682011);the Fundamental Research Funds for the Central Universities(WK2060000035).
Photocatalytic selective aerobic oxidation reactions are crucial in designing advanced organic intermediates,but suffer from low conversion efficiency.Hence,activating O_(2) to create suitable reactive oxygen species,...
关键词:surface modification long-lived species energy transfer singlet oxygen photocatalytic sulphoxidation of sulphides 
Topology of Current-limiting and Energy-transferring DC Circuit Breaker for DC Distribution Networks被引量:6
《CSEE Journal of Power and Energy Systems》2020年第2期298-306,共9页Song Tang Min Chen Guanlong Jia Chenghao Zhang 
This work is supported by National Key R&D Program(2018YFB0904600).
With the development of power electronic technologies and distributed power generation,DC distribution networks attract increasing attention due to their various advantages compared with traditional AC distribution ne...
关键词:DC distribution network energy transfer fault current limiting hybrid DC circuit breaker passive components 
High-efficiency and high-power single-frequency fiber laser at 1.6μm based on cascaded energy-transfer pumping被引量:6
《Photonics Research》2020年第3期414-420,共7页XIANCHAO GUAN QILAI ZHAO WEI LIN TIANYI TAN CHANGSHENG YANG PENGFEI MA ZHONGMIN YANG SHANHUI XU 
National Key Research and Development Program of China(2017YFF0104602);Major Program of the National Natural Science Foundation of China(61790582);NSFC(11674103,51772101,61535014,61635004);Guangdong Key Research and Development Program(2018B090904001,2018B090904003);Local Innovative and Research Teams Project of Guangdong Pearl River Talents Program(2017BT01X137);Natural Science Foundation of Guangdong Province(2016A030310410,2017A030310007);Science and Technology Project of Guangdong(2016B090925004,2017B090911005,201804020028)。
In this paper,a technique combining the cascaded energy-transfer pumping(CEP)method and master-oscillator power-amplifier(MOPA)configuration is proposed for power scaling of 1.6-μm-band single-frequency fiber lasers(...
关键词:FIBER PUMPING power 
Linear polarization output performance of Nd:YAG laser at 946 nm considering the energy-transfer upconversion
《Chinese Physics B》2018年第7期366-370,共5页冯晋霞 李渊骥 张宽收 
Project supported by the National Key R&D Program of China(Grant No.2016YFA0301401);the Fund for Shanxi "331 Project" Key Subjects Construction,China(Grant No.1331KS)
A theoretical model of quasi-three-level laser system is developed, in which both the thermally induced depolarization loss and the effect of energy-transfer upconversion are taken into account. Based on the theoretic...
关键词:946 nm laser linear polarization thermally induced depolarization losses energy-transfer upcon-version 
Interface formation energy,bonding,energy band alignment in α-NaYF4 related core shell models:For future multi-layer core shell luminescence materials被引量:1
《Journal of Rare Earths》2017年第4期315-334,共20页黄勃龙 董浩 Wong Ka-Leung 孙聆东 严纯华 
Project supported by the National Natural Science Foundation of China(NSFC)(21425101,21321001,21371011,21331001);Ministry of Science and Technology(MOST)of China(2014CB643800);Natural Science Foundation of China(NSFC) for the Youth Scientist grant(11504309);the Initial Start-up Grant Support from the Department General Research Fund(Dept.GRF) from ABCT in the Hong Kong Polytechnic University;the Early Career Scheme(ECS) Fund(PolyU 253026/16P) from the Research Grant Council(RGC)in Hong Kong;the High Performance Supercomputer(ATOM Project)in PolyU
To break through the bottle-neck of quantum yield in upconversion (UC) core-shell system, we elucidated that the energy transfer efficiency in core-shell system had an evident contribution from the charge transfer o...
关键词:INTERFACE band-offset CORE-SHELL ENERGY-TRANSFER rare earths 
Equivalent Linear-energy-transfer Evaluation of Pulsed Laser for Single Event Effects Testing
《Annual Report of China Institute of Atomic Energy》2013年第1期96-97,共2页TIAN Bao-xian WANG Zhao LI Ye-jun LIANG Jing 
The pulsed laser method for single event effects testing is a new ground simulation technology in recent years.Based on the mechanism of single event effects and the equivalent criterion of the same numbers of carrier...
关键词:criterion pulsed RADIUS competing TRANSMITTANCE REGIME mentioned PHOTON IONIZATION 
Study on the Interaction between Cephalosporin Drugs and Papain by Spectroscopic Method: Equivalence of Fluorescence Quenching and Enhancement Equation被引量:1
《Chinese Journal of Chemistry》2011年第12期2625-2630,共6页杨曼曼 席小莉 杨频 
The interaction between two 4th generation of new cephalosporin drugs and papain was studied through spectroscopy method at different temperatures. Their dissociation constants were calculated by using theoretical for...
关键词:fluorescence enhancement and quenching PAPAIN the 4th generation cephalosporin new drug dipole-dipole non-radiative-energy-transfer thermodynamic analysis 
Influence of Dopant Concentration on Electroluminescent Performance of Organic White-Light-Emitting Device with Double-Emissive-Layered Structure
《Chinese Physics Letters》2008年第1期294-297,共4页吴晓明 华玉林 印寿根 张丽娟 王宇 侯庆传 张均媚 
Supported by National Natural Science Foundation of China under Grant No 60576038, and The Royal Society (RS) via an International Joint Project of NSFC and RS, Tianjin Natural Science Key Foundation (06TXTJJC14603), and Tianjin Key Discipline of Material Physics and Chemistry.
A novel phosphorescent organic white-light-emitting device (WOLED) with contiguration of ITO/NPB/CBP: TBPe:rubrene/Zn(BTZ)2:Ir(piq)2(acac)/Zn(BTZ)2/Mg:Ag is fabricated successfully, where the phosphoresc...
关键词:ENERGY-TRANSFER DIODES 
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