Hungkit Ting
Peking University
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Publication
Featured researches published by Hungkit Ting.
Advanced Science | 2018
Cuncun Wu; Qiaohui Zhang; Yang Liu; Wei Luo; Xuan Guo; Ziru Huang; Hungkit Ting; Weihai Sun; Xinrui Zhong; Shiyuan Wei; Shufeng Wang; Zhijian Chen; Lixin Xiao
Abstract Recently, lead‐free double perovskites have emerged as a promising environmentally friendly photovoltaic material for their intrinsic thermodynamic stability, appropriate bandgaps, small carrier effective masses, and low exciton binding energies. However, currently no solar cell based on these double perovskites has been reported, due to the challenge in film processing. Herein, a first lead‐free double perovskite planar heterojunction solar cell with a high quality Cs2AgBiBr6 film, fabricated by low‐pressure assisted solution processing under ambient conditions, is reported. The device presents a best power conversion efficiency of 1.44%. The preliminary efficiency and the high stability under ambient condition without encapsulation, together with the high film quality with simple processing, demonstrate promise for lead‐free perovskite solar cells.
AIP Advances | 2015
Shengbo Ma; Hungkit Ting; Yingzhuang Ma; Miwei Zhang; Lixin Xiao; Zhijian Chen
In this paper, smart photovoltaic (SPV) devices, integrating both functions of solar cells and smart windows, was fabricated based on dye-sensitized solar cells using photochromic spiropyran derivatives SIBT as photosensitizers. SPV devices have self-regulated power conversion efficiency (PCE) and light transmission responding to the incident spectra due to the photoisomerization of SIBT. SIBT isomerize from closed-ring form to open-ring form under UV illumination, accompanied with enhanced visible light absorption and electron delocalization. Therefore, increased PCE and absorption in SPV devices were observed under UV treatment and the devices can be restored gradually to the initial status when kept in dark. The SPV devices have self-regulation of PCE and sunlight transmission responding to the changing sun spectra in different times of a day, providing a proper energy usage and a better sun-shading.
Japanese Journal of Applied Physics | 2018
Hungkit Ting; Danfei Zhang; Yihao He; Shiyuan Wei; Tieyi Li; Weihai Sun; Cuncun Wu; Zhijian Chen; Qi Wang; Guoyi Zhang; Lixin Xiao
In perovskite solar cells, the morphology of the porous TiO2 electron transport layer (ETL) largely determines the quality of the perovskites. Here, we chose micro-scale TiO2 (0.2 µm) and compared it with the conventional nanoscale TiO2 (20 nm) in relation to the crystallinity of perovskites. The results show that the micro-scale TiO2 is favorable for increasing the grain size of the perovskites and enhancing the light scattering. However, the oversized TiO2 results in an uneven surface. The evenness of the perovskites can be improved by nanoscale TiO2, while the crystallinity and compactness are not as good as those of the films based on micro-scale TiO2. To combine the advantages of both micro-scale and nanoscale TiO2, by mixing 0.2 µm/20 nm TiO2 with a ratio of as the composite ETL, the device average power conversion efficiency was increased to 11.2% from 9.9% in the case of only 20 nm TiO2.
Organic Electronics | 2017
Weihai Sun; Yunlong Li; Yan Xiao; Ziran Zhao; Senyun Ye; Haixia Rao; Hungkit Ting; Zuqiang Bian; Lixin Xiao; Chunhui Huang; Zhijian Chen
Advanced Functional Materials | 2018
Mengying Bian; Dongdong Zhang; Yuanxun Wang; Yao-Hsien Chung; Yang Liu; Hungkit Ting; Lian Duan; Zhijian Chen; Zuqiang Bian; Zhiwei Liu; Lixin Xiao
Organic Electronics | 2017
Cuncun Wu; Ziru Huang; Yihao He; Wei Luo; Hungkit Ting; Tieyi Li; Weihai Sun; Qiaohui Zhang; Zhijian Chen; Lixin Xiao
Organic Electronics | 2015
Shengbo Ma; Hungkit Ting; Lipei Zhang; Yingzhuang Ma; Lixin Xiao; Zhijian Chen
Materials Today Energy | 2018
Qiaohui Zhang; Hungkit Ting; Shiyuan Wei; Daiqiang Huang; Cuncun Wu; Weihai Sun; Bo Qu; Shufeng Wang; Zhijian Chen; Lixin Xiao
Organic Electronics | 2015
Hungkit Ting; Shengbo Ma; Jing Men; Shufeng Wang; Lixin Xiao; Zhijian Chen
Chemical Physics Letters | 2014
Jing Men; Hungkit Ting; Yu Li; Wei Wang; Guangyu Gao; Lixin Xiao; Zhijian Chen; Shufeng Wang; Qihuang Gong