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Xiong Gong

Researcher at University of Akron

Publications -  264
Citations -  24178

Xiong Gong is an academic researcher from University of Akron. The author has contributed to research in topics: Polymer solar cell & Perovskite (structure). The author has an hindex of 63, co-authored 241 publications receiving 21896 citations. Previous affiliations of Xiong Gong include University of California, Santa Barbara & University of California.

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Conductive water/alcohol-soluble neutral fullerene derivative as an interfacial layer for inverted polymer solar cells with high efficiency.

TL;DR: The neutral fullerene derivative layer greatly increased the surface electronic conductivity of the ZnO EEL, suppressed surface charge recombination, and increased the short-circuit current density and fill factor and an overall power conversion efficiency increase of more than 30% was obtained.
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Water-soluble CdTe quantum dots as an anode interlayer for solution-processed near infrared polymer photodetectors.

TL;DR: Results indicated that CdTe QDs can be utilized as a solution-processable alternative to PEDOT:PSS as an anode interlayer for high performance NIR polymer PDs.
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Three pyrido[2,3,4,5-lmn]phenanthridine derivatives and their large band gap copolymers for organic solar cells

TL;DR: In this paper, three pyrido derivatives were synthesized as building blocks of copolymers Pa, Pb and Pc, giving relatively large band gaps of 2.13, 2.19 and 2.21 eV, respectively.
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Solution-processed vanadium oxide thin film as the hole extraction layer for efficient hysteresis-free perovskite hybrid solar cells

TL;DR: In this paper, a simple way to fabricate VOx thin film from pure-water solution, as the hole extraction layer (HEL) for perovskite hybrid solar cells (pero-HSCs), was reported.
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Wireless portable light-weight self-charging power packs by perovskite-organic tandem solar cells integrated with solid-state asymmetric supercapacitors

TL;DR: In this article, a solution-processed tandem solar cells by perovskite solar cells combined with ternary organic solar cells (OSCs) for achieving large operational voltage.