Home | Survey | Payment| Talks & Presentations | Job Opportunities
Journals   A B C D E F G H I J K L M N O P Q R S T U V W X Y Z
Chinese Chemical Letters
1001-8417
2016 Issue 8
Introduction to the Special Issue of π-Functional Molecules & Polymers
Hao-Li Zhang;Xi-Ke Gao;SKLAOC;SIOC;
..............page:1083
Azulene-based organic functional molecules for optoelectronics
Jin-Xue Dong;Hao-Li Zhang;State Key Laboratory of Applied Organic Chemistry;Key Laboratory of Special Function Materials and Structure Design;College of Chemistry and Chemical Engineering;Lanzhou University;
..............page:1097-1104+1464
Electropolymerized films of redox-active ruthenium complexes for multistate near-infrared electrochromism,ion sensing,and information storage
Jiang-Yang Shao;Chang-Jiang Yao;Bin-Bin Cui;Zhong-Liang Gong;Yu-Wu Zhong;Beijing National Laboratory for Molecular Sciences;CAS Key Laboratory of Photochemistry;Institute of Chemistry;Chinese Academy of Sciences;University of Chinese Academy of Sciences;Institute of Chemistry;Chinese Academy of Sciences;
..............page:1105-1114+1464
Recent advances of folded tetraphenylethene derivatives featuring through-space conjugation
Ping-Chuan Shen;Ze-Yan Zhuang;Zu-Jin Zhao;Ben Zhong Tang;State Key Laboratory of Luminescent Materials and Devices;South China University of Technology;Department of Chemistry;The Hong Kong University of Science and Technology;Hong Kong Branch of Chinese National Engineering Research Center for Tissue Restoration and Reconstruction;
..............page:1115-1123+1464
Organometal halide perovskite quantum dots:synthesis,optical properties,and display applications
Gao-Ling Yang;Hai-Zheng Zhong;Beijing Key Laboratory of Nanophotonics and Ultrafine Optoelectronic Systems;School of Materials Science & Engineering;
..............page:1124-1130+1464
Triarylborane π-electron systems with intramolecular charge-transfer transitions
Zuo-Bang Sun;Sheng-Yong Li;Zhi-Qiang Liu;Cui-Hua Zhao;School of Chemistry and Chemical Engineering;Key Laboratory of Special Functional Aggregated Materials Ministry of Education;Shandong University;State Key Laboratory of Crystal Materials;Shandong University;
..............page:1131-1138+1464
BN-embedded aromatics for optoelectronic applications
Jie-Yu Wang;Jian Pei;Beijing National Laboratory for Molecular Sciences;Key Laboratory of Bioorganic Chemistry and Molecular Engineering of Ministry of Education;Key Laboratory of Polymer Chemistry and Physics of Ministry of Education;Center for Soft Matter Science and Engineering;College of Chemistry and Molecular Engineering;Peking University;
..............page:1139-1146+1465
Advances on supramolecular assembly of cyclometalated platinum(Ⅱ) complexes
Teng-Fei Fu;Lei Ao;Zong-Chun Gao;Xiao-Long Zhang;Feng Wang;CAS Key Laboratory of Soft Matter Chemistry;Department of Polymer Science and Engineering;University of Science and Technology of China;
..............page:1147-1154+1465
π-Conjugated cyanostilbene-based optoelectric functional materials
Cheng Hang;Hong-Wei Wu;Liang-Liang Zhu;State Key Laboratory of Molecular Engineering of Polymers;Department of Macromolecular Science;Fudan University;
..............page:1155-1165+1465
Bowl-shaped conjugated polycycles
Xue-Qing Hou;Yan-Tao Sun;Lei Liu;Shi-Tao Wang;Rui-Li Geng;Xiang-Feng Shao;State Key Laboratory of Applied Organic Chemistry;Lanzhou University;
..............page:1166-1174+1465
Corannulene derivatives for organic electronics:From molecular engineering to applications
Rui Chen;Ru-Qiang Lu;Pei-Chen Shi;Xiao-Yu Cao;State Key Laboratory of Physical Chemistry of Solid Surfaces;Collaborative Innovation Center of Chemistry for Energy Materials;Department of Chemistry;College of Chemistry and Chemical Engineering;Xiamen University;
..............page:1175-1183+1465
Crystallization-induced phosphorescence of pure organic luminogens
Chun-Rui Wang;Yong-Yang Gong;Wang-Zhang Yuan;Yong-Ming Zhang;School of Chemistry and Chemical Engineering;Shanghai Key Lab of Electrical Insulation and Thermal Aging;Shanghai Electrochemical Energy Devices Research Center;Shanghai Jiao Tong University;
..............page:1184-1192+1465-1466
Recent progress in functionalized electrophosphorescent iridium(Ⅲ) complexes
Fu-Quan Han;Chun-Miao Han;Hui Xu;Key Laboratory of Functional Inorganic Material Chemistry & School of Chemistry and Material Science;Heilongjiang University;
..............page:1193-1200
New applications of poly(arylene ether)s in organic light-emitting diodes
Shi-Yang Shao;Jun-Qiao Ding;Li-Xiang Wang;State Key Laboratory of Polymer Physics and Chemistry;Changchun Institute of Applied Chemistry;Chinese Academy of Sciences;
..............page:1201-1208+1466
Single-chain and monolayered conjugated polymers for molecular electronics
Zhao-Yang Zhang;Tao Li;School of Chemistry and Chemical Engineering;Shanghai Jiao Tong University;
..............page:1209-1222+1466
Triplet fusion delayed fluorescence materials for OLEDs
Yan-Ju Luo;Zhi-Yun Lu;Yan Huang;College of Chemistry;Sichuan University;
..............page:1223-1230+1466
Room-temperature phosphorescence from purely organic materials
Yang Liu;Ge Zhan;Zhi-Wei Liu;Zu-Qiang Bian;Chun-Hui Huang;Beijing National Laboratory for Molecular Sciences;State Key Laboratory of Rare Earth Materials Chemistry and Applications;College of Chemistry and Molecular Engineering;Peking University;
..............page:1231-1240+1467
Recent progress towards fluorinated copolymers for efficient photovoltaic applications
Xiao-Peng Xu;Ying Li;Mei-Ming Luo;Qiang Peng;Key Laboratory of Green Chemistry and Technology of Ministry of Education;College of Chemistry;and State Key Laboratory of Polymer Materials Engineering;Sichuan University;
..............page:1241-1249+1467
Heavy metal complex containing organic/polymer materials for bulk-heterojunction photovoltaic devices
Ya-Nan Liu;Shi-Fan Wang;You-Tian Tao;Wei Huang;Key Laboratory of Flexible Electronics & Institute of Advanced Materials;Jiangsu National Synergetic Innovation Center for Advanced Materials;Nanjing Tech University;
..............page:1250-1258+1467
Graphene-based materials for polymer solar cells
Xiao-Feng Lin;Zi-Yan Zhang;Zhong-Ke Yuan;Jing Li;Xiao-Fen Xiao;Wei Hong;Xu-Dong Chen;Ding-Shan Yu;Key Laboratory for Polymeric Composite and Functional Materials of Ministry of Education of China;School of Chemistry and Chemical Engineering;Sun Yat-sen University;Key Laboratory of High Performance Polymer-based Composites of Guangdong Province;School of Chemistry and Chemical Engineering;Sun Yat-sen University;
..............page:1259-1270+1468
Naphthodithiophene-based donor materials for solution processed organic solar cells
Xiang-Wei Zhu;Kun Lu;Huan Li;Rui-Min Zhou;Zhi-Xiang Wei;CAS Key Laboratory of Nanosystem and Hierarchical Fabrication;CAS Center for Excellence in Nanoscience;National Center for Nanoscience and Technology;
..............page:1271-1276+1468
Thieno[3,4-c]pyrrole-4,6-dione based copolymers for high performance organic solar cells and organic field effect transistors
Pan He;Xiao-Lan Qiao;Qun Qian;Hong-Xiang Li;Department of Chemistry;Shanghai University;Shanghai Institute of Organic Chemistry;Chinese Academy of Sciences;
..............page:1277-1282
Recent developments of di-amide/imide-containing small molecular non-fullerene acceptors for organic solar cells
He-Wei Luo;Zi-Tong Liu;Department of Material and Chemical Engineering;Zhengzhou University of Light Industry;Beijing National Laboratory for Molecular Sciences;CAS Key Laboratory of Organic Solids;Institute of Chemistry;Chinese Academy of Sciences;
..............page:1283-1292+1468
New advances in small molecule hole-transporting materials for perovskite solar cells
Ya-Kun Wang;Zuo-Quan Jiang;Liang-Sheng Liao;Jiangsu Key Laboratory for Carbon-Based Functional Materials & Devices;Institute of Functional Nano & Soft Materials;Soochow University;
..............page:1293-1303+1469
Recent advances in phenothiazine-based dyes for dye-sensitized solar cells
Jun-Sheng Luo;Zhong-Quan Wan;Chun-Yang Jia;State Key Laboratory of Electronic Thin Films and Integrated Devices;School of Microelectronics and Solid-State Electronics;University of Electronic Science and Technology of China;
..............page:1304-1318
Photoresponsive organic field-effect transistors involving photochromic molecules
Li-Na Fu;Bing Leng;Yong-Sheng Li;Xi-Ke Gao;Laboratory of Low-Dimensional Materials Chemistry;Key Laboratory for Ultrafine Materials of the Ministry of Education;School of Materials Science and Engineering;East China University of Science and Technology;Key Laboratory of Synthetic and Self-Assembly Chemistry for Organic Functional Molecules;Shanghai Institute of Organic Chemistry;Chinese Academy of Sciences;
..............page:1319-1329
Tailoring crystal polymorphs of organic semiconductors towards high-performance field-effect transistors
Yong-Gang Zhen;Huan-Li Dong;Lang Jiang;Wen-Ping Hu;Beijing National Laboratory for Molecular Sciences;Key Laboratory of Organic Solids;Institute of Chemistry;Chinese Academy of Sciences;Tianjin Key Laboratory of Molecular Optoelectronic Sciences;Department of Chemistry;School of Sciences;Tianjin University & Collaborative Innovation Center of Chemical Science and Engineering;
..............page:1330-1338+1469
Proteins as functional interlayer in organic field-effect transistor
Wei-Hong Zhang;Bo-Jing Jiang;Peng Yang;Key Laboratory of Applied Surface and Colloids Chemistry;Ministry of Education;School of Chemistry and Chemical Engineering;Shaanxi Normal University;College of Chemistry and Chemical Engineering;Xianvang Normal University;
..............page:1339-1344+1469
Evolution of emission manners of organic light-emitting diodes:From emission of singlet exciton to emission of doublet exciton
Ablikim Obolda;Ming Zhang;Feng Li;State Key Laboratory of Supramolecular Structure and Materials;College of Chemistry;Jilin University;
..............page:1345-1349+1469
Aggregation structures of organic conjugated molecules on their optoelectronic properties
Jia-Dong Zhou;Wen-Qiang Zhang;Lin-Lin Liu;Zeng-Qi Xie;Yu-Guang Ma;Institute of Polymer Optoelectronic Materials & Devices;State Key Laboratory of Luminescent Materials & Devices;South China University of Technology;
..............page:1350-1356+1469
The impact of regiochemistry of conjugated molecules on the performance of organic electronic devices
Cheng Zhang;Xiao-Zhang Zhu;Beijing National Laboratory for Molecular Sciences;CAS Key Laboratory of Organic Solids;Institute of Chemistry;Chinese Academy of Sciences;University of Chinese Academy of Sciences;
..............page:1357-1366+1470
Organic materials with hydrostatic pressure induced mechanochromic properties
Lu Wang;Kai-Qi Ye;Hong-Yu Zhang;State Key Laboratory of Supramolecular Structure and Materials;College of Chemistry;Jilin University;
..............page:1367-1375+1470
Two-dimensional porphyrin- and phthalocyanine-based covalent organic frameworks
Hongmin Wang;Huimin Ding;Xiangshi Meng;Cheng Wang;Key Laboratory of Biomedical Polymers;College of Chemistry and Molecular Sciences;Wuhan University;
..............page:1376-1382+1470
Recent advances of covalent organic frameworks in electronic and optical applications
Li Ma;Shan Wang;Xiao Feng;Bo Wang;Key Laboratory of Cluster Science;Ministry of Education of China;Beijing Key Laboratory of Photoelectronic/Electrophotonic Conversion Materials;School of Chemistry;Beijing Institute of Technology;
..............page:1383-1394+1470
Semiconducting covalent organic frameworks:a type of two-dimensional conducting polymers
Lei Yang;Da-Cheng Wei;Department of Macromolecular Science;State Key Laboratory of Molecular Engineering of Polymers;Fudan University;
..............page:1395-1404
Conjugated microporous polymers with distinctive π-electronic properties exhibiting enhanced optical applications
Jing Tan;Wu-Ji Chen;Jia Guo;State Key Laboratory of Molecular Engineering of Polymers;Department of Macromolecular Science and Lab of Advanced Materials;Fudan University;
..............page:1405-1411+1470
Functional organic nanoparticles for photodynamic therapy
Lei-Lei Rui;Hong-Liang Cao;Yu-Dong Xue;Li-Chao Liu;Lei Xu;Yun Gao;Wei-An Zhang;Shanghai Key Laboratory of Advanced Polymeric Materials;East China University of Science and Technology;
..............page:1412-1420+1470
Alignment and patterning of organic single crystals for field-effect transistors
Qin-Fen Li;Shuang Liu;Hong-Zheng Chen;Han-Ying Li;MOE Key Laboratory of Macromolecular Synthesis and Functionalization;State Key Laboratory of Silicon Materials;Department of Polymer Science and Engineering;Zhejiang University;
..............page:1421-1428+1471
Recent advances in fluorescence sensor for the detection of peroxide explosives
Yu Zhang;Yan-Yan Fu;De-Feng Zhu;Jia-Qiang Xu;Qing-Guo He;Jian-Gong Cheng;State Key Lab of Transducer Technology;Shanghai Institute of Microsystem and Information Technology;Chinese Academy of Sciences;Department of Chemistry;College of Sciences;Shanghai University;
..............page:1429-1436+1471
Design and construction of three-dimensional graphene/conducting polymer for supercapacitors
Meng Wang;Yu-Xi Xu;School of Nuclear Science and Technology;University of South China;State Key Laboratory of Molecular Engineering of Polymers;Department of Macromolecular Science;Fudan University;
..............page:1437-1444+1471
Theoretical predication for transition energies of thermally activated delayed fluorescence molecules
Xiaohui Tian;Haitao Sun;Qisheng Zhang;Chihaya Adachi;MOE Key Laboratory of Macromolecular Synthesis and Functionalization;Department of Polymer Science and Engineering;Zhejiang University;State Key Laboratory of Precision Spectroscopy;School of Physics and Materials Science;East China Normal University;Center for Organic Photonics and Electronics Research;Kyushu University;
..............page:1445-1452
Multiscale description of molecular packing and electronic processes in small-molecule organic solar cells
Xing-Xing Shen;Guang-Chao Han;Yuan-Ping Yi;Beijing National Laboratory for Molecular Sciences;CAS Key Laboratory of Organic Solids;Institute of Chemistry;Chinese Academy of Sciences;University of Chinese Academy of Sciences;Institute of Chemistry;Chinese Academy of Sciences;
..............page:1453-1463+1471
Information for authors
..............page:1472-1473