Hairuo Wu
Chinese Academy of Sciences
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Featured researches published by Hairuo Wu.
Scientific Reports | 2015
Bo Zhao; Tianyou Zhang; Bei Chu; Wenlian Li; Zisheng Su; Hairuo Wu; Xingwu Yan; Fangming Jin; Yuan Gao; Chengyuan Liu
In this manuscript, we demonstrated a highly efficient DCJTB emission with delayed fluorescent exciplex TCTA:3P-T2T as the host. For the 1.0% DCJTB doped concentration, a maximum luminance, current efficiency, power efficiency and EQE of 22,767 cd m−2, 22.7 cd A−1, 21.5 lm W−1 and 10.15% were achieved, respectively. The device performance is the best compared to either red OLEDs with traditional fluorescent emitter or traditional red phosphor of Ir(piq)3 doped into CBP host. The extraction of so high efficiency can be explained as the efficient triplet excitons up-conversion of TCTA:3P-T2T and the energy transfer from exciplex host singlet state to DCJTB singlet state.
Scientific Reports | 2015
Tianyou Zhang; Bo Zhao; Bei Chu; Wenlian Li; Zisheng Su; Xingwu Yan; Chengyuan Liu; Hairuo Wu; Yuan Gao; Fangming Jin; Fuhua Hou
Exciplex is well known as a charge transfer state formed between electron-donating and electron-accepting molecules. However, exciplex based organic light emitting diodes (OLED) often performed low efficiencies relative to pure phosphorescent OLED and could hardly be used to construct white OLED (WOLED). In this work, a new mechanism is developed to realize efficient WOLED with extremely simple structure by redistributing the energy of triplet exciplex to both singlet exciplex and the orange dopant. The micro process of energy transfer could be directly examined by detailed photoluminescence decay measurement and time resolved photoluminescence analysis. This strategy overcomes the low reverse intersystem crossing efficiency of blue exciplex and complicated device structure of traditional WOLED, enables us to achieve efficient hybrid WOLEDs. Based on this mechanism, we have successfully constructed both exciplex-fluorescence and exciplex-phosphorescence hybrid WOLEDs with remarkable efficiencies.
Scientific Reports | 2016
Yuan Gao; Fangming Jin; Wenlian Li; Zisheng Su; Bei Chu; Junbo Wang; Haifeng Zhao; Hairuo Wu; Chengyuan Liu; Fuhua Hou; Tong Lin; Qiaogang Song
We report a small molecule tandem organic photovoltaic (OPV) cell with a high power conversion efficiency (PCE) of 7.27%. This cell contains two subcells with an identical mixed active layer of C70:5 wt%TAPC (1,1-bis-(4-bis(4-methyl-phenyl)-amino-phenyl)-cyclohexane). The performance was dramatically improved by simply inserting a thin boron subphthalocyanine chloride (SubPc) interlayer, which results in an increase of the short-circuit current and open-circuit voltage as well as a decrease of the series resistance of the tandem cell. The response of the cell only contributed from the absorption of C70. The high PCE was attributed to the high absorption efficiency of C70 and improved holes extraction efficiency at the anode due to the band bending occurs at both MoO3/SubPc and SubPc/C70:5 wt%TAPC interfaces.
ACS Applied Materials & Interfaces | 2014
Tianyou Zhang; Bei Chu; Wenlian Li; Zisheng Su; Qi Ming Peng; Bo Zhao; Yongshi Luo; Fangming Jin; Xingwu Yan; Yuan Gao; Hairuo Wu; Feng Zhang; Di Fan; Junbo Wang
Organic Electronics | 2015
Bo Zhao; Tianyou Zhang; Bei Chu; Wenlian Li; Zisheng Su; Yongshi Luo; Ruigang Li; Xingwu Yan; Fangming Jin; Yuan Gao; Hairuo Wu
Organic Electronics | 2015
Tianyou Zhang; Bo Zhao; Bei Chu; Wenlian Li; Zisheng Su; Lijuan Wang; Junbo Wang; Fangming Jin; Xingwu Yan; Yuan Gao; Hairuo Wu; Chengyuan Liu; Tong Lin; Fuhua Hou
Organic Electronics | 2015
Bo Zhao; Tianyou Zhang; Wenlian Li; Zisheng Su; Bei Chu; Xingwu Yan; Fangming Jin; Yuan Gao; Hairuo Wu
Organic Electronics | 2013
Fangming Jin; Bei Chu; Wenlian Li; Zisheng Su; Bo Zhao; Tianyou Zhang; Xingwu Yan; Yuan Gao; Hairuo Wu; Chun-Sing Lee; Jianzhuo Zhu; Huachun Pi; Junbo Wang
Organic Electronics | 2014
Fangming Jin; Bei Chu; Wenlian Li; Zisheng Su; Xingwu Yan; Junbo Wang; Ruigang Li; Bo Zhao; Tianyou Zhang; Yuan Gao; Chun-Sing Lee; Hairuo Wu; Fuhua Hou; Tong Lin; Qiaogang Song
Organic Electronics | 2015
Tianyou Zhang; Bo Zhao; Bei Chu; Wenlian Li; Zisheng Su; Xingwu Yan; Chengyuan Liu; Hairuo Wu; Fangming Jin; Yuan Gao