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Dive into the research topics where Hong-Tao Cao is active.

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Featured researches published by Hong-Tao Cao.


Chinese Journal of Polymer Science | 2017

Progress in fluorene-based wide-bandgap steric semiconductors

Meng-Na Yu; Chang-jin Ou; Bin Liu; Dong-Qing Lin; Yu-Yu Liu; Wei Xue; Zong-qiong Lin; Jin-Yi Lin; Yan Qian; Sha-Sha Wang; Hong-Tao Cao; Linyi Bian; Ling-Hai Xie; Wei Huang

Molecular bulks are favorable for the thermal and morphological stability in organic wide-bandgap semiconducting polymers with potential applications in both information and energy electronics. In this review, we present our progress in the design of fluorene-based bulky semiconductors with a fractal four-element pattern. Firstly, we established one-pot methods to spirofluorenes, especially spiro[fluorene-9,9′-xanthene] (SFX) serving as the next-generation spiro-based semiconductors. Secondly, we observed the supramolecular forces at the bulky groups and discovered the supramolecular steric hindrance (SSH) effect on polymorphisms, nanocrystals as well as device performance. Thus, a synergistically molecular attractor-repulsor theory (SMART) was proposed for the control of nanocrystal morphology, thin film phase and morphology. Thirdly, the third possible type of defects has been identified to generate green band (g-band) emission in wide-bandgap semiconductors by the introduction of molecular strain design of cyclofluorene. Finally, the first bulky polydiarylfluorene with highly crystalline and β conformation was achieved by an attractor-repulsor design of tadpole-shape monomer, which offered an effective platform to fabricate stable wide-bandgap semiconducting devices. All the discoveries offer the solid basis to break through bottlenecks of organic/polymer wide-bandgap semiconductors by the improvements of overall performances.


Organic Electronics | 2017

Excimer-based white electroluminescence from supramolecular bulk effects of dumbbell-shaped molecules via attractor-repulsor molecular design

Chang-Jin Ou; Bao-Yi Ren; Jie-Wei Li; Dong-Qing Lin; Chao Zhong; Ling-Hai Xie; Jian-Feng Zhao; Baoxiu Mi; Hong-Tao Cao; Wei Huang


General Chemistry | 2015

Spirofluorene-Based Blue Phosphorescent Organic Light-Emitting Diode with Improved Efficiency Using Co-Host Structure

Mingli Sun; Yuqiao Guan; Bin Liu; Shufen Chen; Yang Zhang; Hong-Tao Cao; Ling-Hai Xie; Yan Qian; Wei Huang


Organic Electronics | 2016

Friedel-Crafts arylmethylation: A simple approach to synthesize bipolar host materials for efficient electroluminescence

Chang-Jin Ou; Jin-Yi Lin; Jie Mao; Shuangquan Chu; Yu Zhao; Linghai Xie; Hong-Tao Cao; Xin-Wen Zhang; Ying Wei; Wei Huang


Dyes and Pigments | 2018

Novel electron acceptor based on spiro[fluorine-9,9′-xanthene] for exciplex thermally activated delayed fluorescence

Hong-Tao Cao; Yu Zhao; Chen Sun; Da Fang; Ling-Hai Xie; Min-Nan Yan; Ying Wei; Hong-Mei Zhang; Wei Huang


Physica Status Solidi B-basic Solid State Physics | 2018

Excellent Charge-Storage Properties of Polystyrene/SFXs Electret Films by Repeated Contact with an AFM Probe

Jin Wang; Jiao-Jiao Xu; Xiao Wang; Hong-Tao Cao; Ling-Hai Xie; Mingdong Yi; Wei Huang


Nanoscale | 2018

Variable segment roles: modulation of the packing modes, nanocrystal morphologies and optical emissions

Sha-Sha Wang; Rong Rong; Ling-Zhi Jin; Shan-Shan Yang; Yin-Xiang Li; He Zhang; Yuwei Xiong; Litao Sun; Hong-Tao Cao; Ling-Hai Xie; Wei Huang


Archive | 2017

CCDC 1455356: Experimental Crystal Structure Determination

Chang-Jin Ou; Bao-Yi Ren; Jie-Wei Li; Dong-Qing Lin; Chao Zhong; Ling-Hai Xie; Jian-Feng Zhao; Baoxiu Mi; Hong-Tao Cao; Wei Huang


Archive | 2017

CCDC 1423534: Experimental Crystal Structure Determination

Chang-Jin Ou; Bao-Yi Ren; Jie-Wei Li; Dong-Qing Lin; Chao Zhong; Ling-Hai Xie; Jian-Feng Zhao; Baoxiu Mi; Hong-Tao Cao; Wei Huang


Archive | 2017

CCDC 1455355: Experimental Crystal Structure Determination

Chang-Jin Ou; Bao-Yi Ren; Jie-Wei Li; Dong-Qing Lin; Chao Zhong; Ling-Hai Xie; Jian-Feng Zhao; Baoxiu Mi; Hong-Tao Cao; Wei Huang

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Ling-Hai Xie

Nanjing University of Posts and Telecommunications

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Dong-Qing Lin

Nanjing University of Posts and Telecommunications

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Bao-Yi Ren

Shenyang University of Chemical Technology

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Baoxiu Mi

Nanjing University of Posts and Telecommunications

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Chao Zhong

Nanjing University of Posts and Telecommunications

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Yan Qian

Nanjing University of Posts and Telecommunications

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Bin Liu

Nanjing University of Posts and Telecommunications

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Mingli Sun

Nanjing University of Posts and Telecommunications

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Sha-Sha Wang

Nanjing University of Posts and Telecommunications

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Ying Wei

Nanjing University of Posts and Telecommunications

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