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Qiang Fu

Researcher at Chinese Academy of Sciences

Publications -  22
Citations -  1117

Qiang Fu is an academic researcher from Chinese Academy of Sciences. The author has contributed to research in topics: OLED & Phosphorescence. The author has an hindex of 18, co-authored 22 publications receiving 1036 citations. Previous affiliations of Qiang Fu include Huazhong University of Science and Technology.

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Solution-processable small molecules as efficient universal bipolar host for blue, green and red phosphorescent inverted OLEDs

TL;DR: In this article, a solution-processable electron transporting material 2,7-bis(diphenylphosphoryl)-9,9′-spirobi[fluorene] (SPPO13) is employed to blend with a solutionprocessable hole transporting material 4,4′, 4′-tri(9-carbazoyl)triphenylamine (TCTA) to be used as a universal bipolar co-host for blue, green and red phosphors, and for the first time, phosphorescent IOLEDs are fabricated
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Highly Efficient Deep-Blue Electrophosphorescence Enabled by Solution-Processed Bipolar Tetraarylsilane Host with Both a High Triplet Energy and a High-Lying HOMO Level

TL;DR: A new bipolar tetraarylsilane derivative with both a sufficiently high triplet energy and a high-lying highest occupied molecular orbital energy level is presented as an excellent host for the deep-blue phosphor.
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Solution-Processed Small Molecules As Mixed Host for Highly Efficient Blue and White Phosphorescent Organic Light-Emitting Diodes

TL;DR: The incorporation of the hole-transporting 1,1-bis[(di-4-tolylamino)phenyl]cyclohexane (TAPC) into TCTA as the mixed-host was demonstrated to greatly reduce the driving voltage and thus enhance the efficiency due to the improvement of hole injection and transport.
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Novel Deep Blue OLED Emitters with 1,3,5-Tri(anthracen-10-yl)benzene-Centered Starburst Oligofluorenes

TL;DR: A series of starburst materials (T1−T3) bearing a 1,3,5-tri(anthracen-10-yl)benze-ne core (T0) and three oligofluorenes arms have been synthesized and characterized.
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Room-temperature sol-gel derived molybdenum oxide thin films for efficient and stable solution-processed organic light-emitting diodes.

TL;DR: For the first time, the novel solution-processed MoO3 thin films were successfully applied as the hole injection layers (HILs) for solution- Processed organic light-emitting diodes (OLEDs).