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Efficient quantum dot light-emitting diodes by controlling the carrier accumulation and exciton formation Journal article
ACS Applied Materials and Interfaces, 2014,Volume: 6,Issue: 16,Page: 14001-14007
Authors:  Ji W.;  Tian Y.;  Zeng Q.;  Qu S.;  Zhang L.;  Jing P.;  Wang J.;  Zhao J.
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carrier accumulation interface  exciton formation zone  exciton quenching  inverted structure  quantum dot light-emitting diodes  
The work mechanism and sub-bandgap-voltage electroluminescence in inverted quantum dot light-emitting diodes Journal article
Scientific Reports, 2014,Volume: 4
Authors:  Ji W.;  Jing P.;  Zhang L.;  Li D.;  Zeng Q.;  Qu S.;  Zhao J.
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Highly luminescent carbon-nanoparticle-based materials: Factors infl uencing photoluminescence quantum yield Journal article
Particle and Particle Systems Characterization, 2014,Volume: 31,Issue: 11,Page: 1175-1182
Authors:  Qu S.;  Shen D.;  Liu X.;  Jing P.;  Zhang L.;  Ji W.;  Zhao H.;  Fan X.;  Zhang H.
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Towards efficient solid-state photoluminescence based on carbon-nanodots and starch composites Journal article
Nanoscale, 2014,Volume: 6,Issue: 21,Page: 13076-13081
Authors:  Sun M.;  Qu S.;  Hao Z.;  Ji W.;  Jing P.;  Zhang H.;  Zhang L.;  Zhao J.;  Shen D.
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Advance of CE and CEC in phytochemicalanalysis (2012–2013) Journal article
Electrophoresis, 2014,Volume: 35,Page: 205-224
Authors:  Jing Zhao;  De-jun Hu;  Kameng Lao;  Zong-mei Yang;  Shao-ping Li
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Capillary Electrochromatography  Capillary Electrophoresis  Herbal Medicine  Phytochemical Analysis