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    1.Systematic strategy for high-performance small molecular hybrid white OLED via blade coating at ambient condition

    Tian, QS, Shen, WS,     More...

    ORGANIC ELECTRONICS[1566-1199], Published 2022, Volume 100,

    收錄情况: WOS SCOPUS

    WOS核心合集引用:  2022影響因子:  3.2  发表年影響因子:  3.2 

    2.Highly efficient near-infrared thermally activated delayed fluorescence material based on a spirobifluorene decorated donor

    Liu, JF, Wang, XQ, Y     More...

    ORGANIC ELECTRONICS[1566-1199], Published 2021, Volume 91,

    收錄情况: WOS SCOPUS

    WOS核心合集引用: 18  2022影響因子:  3.2  发表年影響因子:  3.868 

    3.TiI4-doping induced bulk defects passivation in halide perovskites for high efficient photovoltaic devices

    Gao, CH, Zhang, Y, Z     More...

    ORGANIC ELECTRONICS[1566-1199], Published 2021, Volume 88,

    收錄情况: WOS SCOPUS

    WOS核心合集引用:  2022影響因子:  3.2  发表年影響因子:  3.868 

    4.Light-emitting carbon dots extracted from naturally grown torreya grandis seeds

    Zhang, XinYu, Zhuo,     More...

    Organic Electronics[1566-1199], Published 2021, Volume 96,

    收錄情况: WOS SCOPUS

    WOS核心合集引用:  2022影響因子:  3.2  发表年影響因子:  3.868 

    5.Real-time interface investigation on degradation mechanism of organic light-emitting diode by in-operando X-ray spectroscopies

    Nie, KQ, Zhang, H, M     More...

    ORGANIC ELECTRONICS[1566-1199], Published 2020, Volume 87,

    收錄情况: WOS SCOPUS

    WOS核心合集引用:  2022影響因子:  3.2  发表年影響因子:  3.721 

    6.Structurally controlled singlet -triplet splitting for blue star -shaped thermally activated delayed fluorescence emitters incorporating the tricarbazoles-triazine motifs

    Kumar, S, Ma, YY, Kh     More...

    ORGANIC ELECTRONICS[1566-1199], Published 2020, Volume 84,

    收錄情况: WOS SCOPUS

    WOS核心合集引用:  2022影響因子:  3.2  发表年影響因子:  3.721 

    7.High-performance sky-blue phosphorescent organic light-emitting diodes employing wide-bandgap bipolar host materials with thermally activated delayed fluorescence characteristics

    Zhang, YL, Ran, Q, W     More...

    ORGANIC ELECTRONICS[1566-1199], Published 2020, Volume 81,

    收錄情况: WOS SCOPUS

    WOS核心合集引用: 10  2022影響因子:  3.2  发表年影響因子:  3.721 

    8.Donor-spiro-acceptor architecture for green thermally activated delayed fluorescence (TADF) emitter

    Khan, A, Wang, YK, H     More...

    ORGANIC ELECTRONICS[1566-1199], Published 2020, Volume 77,

    收錄情况: WOS SCOPUS

    WOS核心合集引用: 11  2022影響因子:  3.2  发表年影響因子:  3.721 

    9.Low-temperature solution-processed hybrid interconnecting layer with bulk/interfacial synergistic effect in symmetric tandem organic solar cells

    Ge, HT, Yuan, S, Li,     More...

    ORGANIC ELECTRONICS[1566-1199], Published 2019, Volume 75,

    收錄情况: WOS SCOPUS

    WOS核心合集引用: 10  2022影響因子:  3.2  发表年影響因子:  3.310 

    10.Fluorenone-based thermally activated delayed fluorescence materials for orange-red emission

    Yu, YJ, Tang, X, Ge,     More...

    ORGANIC ELECTRONICS[1566-1199], Published 2019, Volume 73, Pages 240-246

    收錄情况: WOS SCOPUS

    WOS核心合集引用: 11  2022影響因子:  3.2  发表年影響因子:  3.310 

    11.Dibenzothiophene, dibenzofuran and pyridine substituted tetraphenyl silicon derivatives hosts for green phosphorescent organic light-emitting diodes

    Ding, L, Wang, JN, L     More...

    ORGANIC ELECTRONICS[1566-1199], Published 2019, Volume 71, Pages 258-265

    收錄情况: WOS SCOPUS

    WOS核心合集引用:  2022影響因子:  3.2  发表年影響因子:  3.310 

    12.A sky-blue thermally activated delayed fluorescence emitter based on multimodified carbazole donor for efficient organic light-emitting diodes

    Zhu, XD, Tian, QS, Z     More...

    ORGANIC ELECTRONICS[1566-1199], Published 2019, Volume 68, Pages 113-120

    收錄情况: WOS SCOPUS

    WOS核心合集引用: 17  2022影響因子:  3.2  发表年影響因子:  3.310 

    13.Near-infrared non-fullerene acceptors based on dithienyl[1,2-b:4,5-b'] benzodithiophene core for high performance PTB7-Th-based polymer solar cells

    Li, Y, Su, WY, Wu, F     More...

    ORGANIC ELECTRONICS[1566-1199], Published 2019, Volume 65, Pages 63-69

    收錄情况: WOS SCOPUS

    WOS核心合集引用: 10  2022影響因子:  3.2  发表年影響因子:  3.310 

    14.Novel tetraarylsilane-based hosts for blue phosphorescent organic light-emitting diodes

    Yang, RJ, Li, D, Bai     More...

    ORGANIC ELECTRONICS[1566-1199], Published 2018, Volume 55, Pages 117-125

    收錄情况: WOS SCOPUS

    WOS核心合集引用:  2022影響因子:  3.2  发表年影響因子:  3.495 

    15.A series of spirofluorene-based host materials for efficient phosphorescent organic light-emitting diodes

    Liu, XY, Tang, X, Zh     More...

    ORGANIC ELECTRONICS[1566-1199], Published 2018, Volume 61, Pages 70-77

    收錄情况: WOS SCOPUS

    WOS核心合集引用: 12  2022影響因子:  3.2  发表年影響因子:  3.495 

    16.Blue thermally activated delayed fluorescence materials based on bi/tri-carbazole derivatives

    Zhang, WJ, Zhang, YX     More...

    ORGANIC ELECTRONICS[1566-1199], Published 2018, Volume 58, Pages 238-244

    收錄情况: WOS SCOPUS

    WOS核心合集引用:  2022影響因子:  3.2  发表年影響因子:  3.495 

    17.Novel o-D-pi-A arylamine/arylphosphine oxide hybrid hosts for efficient phosphorescent organic light-emitting diodes

    Liu, XY, Tian, QS, Z     More...

    ORGANIC ELECTRONICS[1566-1199], Published 2018, Volume 56, Pages 186-191

    收錄情况: WOS SCOPUS

    WOS核心合集引用:  2022影響因子:  3.2  发表年影響因子:  3.495 

    18.Solution processable small molecule based organic light-emitting devices prepared by dip-coating method

    Xie, YM, Sun, Q, Zhu     More...

    ORGANIC ELECTRONICS[1566-1199], Published 2018, Volume 55, Pages 1-5

    收錄情况: WOS SCOPUS

    WOS核心合集引用: 11  2022影響因子:  3.2  发表年影響因子:  3.495 

    19.New carbazole-based bipolar hosts for efficient blue phosphorescent organic light-emitting diodes

    Bian, CL, Wang, Q, R     More...

    ORGANIC ELECTRONICS[1566-1199], Published 2018, Volume 52, Pages 138-145

    收錄情况: WOS SCOPUS

    WOS核心合集引用: 17  2022影響因子:  3.2  发表年影響因子:  3.495 

    20.Highly luminescent platinum(II) complexes based on pyrazolo[1,5-f] phenanthridine-containing ligands

    Zhao, DL, Tang, X, L     More...

    ORGANIC ELECTRONICS[1566-1199], Published 2017, Volume 50, Pages 473-479

    收錄情况: WOS SCOPUS

    WOS核心合集引用: 22  2022影響因子:  3.2  发表年影響因子:  3.680 

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