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Guosheng Shao
Researcher at Zhengzhou University
Publications - 353
Citations - 11817
Guosheng Shao is an academic researcher from Zhengzhou University. The author has contributed to research in topics: Thin film & Perovskite (structure). The author has an hindex of 49, co-authored 317 publications receiving 8272 citations. Previous affiliations of Guosheng Shao include University of Surrey & University of Bolton.
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An efficient room-temperature silicon-based light-emitting diode.
TL;DR: The fabrication is described of a silicon light-emitting diode (LED) that operates efficiently at room temperature using standard silicon processing techniques, as boron ion implantation is already used as a standard method for the fabrication of silicon devices.
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Two-dimensional Ruddlesden–Popper layered perovskite solar cells based on phase-pure thin films
Chao Liang,Chao Liang,Hao Gu,Hao Gu,Yingdong Xia,Zhuo Wang,Xiaotao Liu,Junmin Xia,Shouwei Zuo,Yue Hu,Xingyu Gao,Wei Hui,Lingfeng Chao,Tingting Niu,Min Fang,Hui Lu,Han Dong,Hui Yu,Shi Chen,Xueqin Ran,Lin Song,Bixin Li,Jing Zhang,Yong Peng,Guosheng Shao,Jianpu Wang,Yonghua Chen,Guichuan Xing,Wei Huang,Wei Huang,Wei Huang +30 more
TL;DR: In this article, phase-pure quantum well films with microscale vertically aligned grains were constructed by using a molten salt spacer n-butylamine acetate instead of the traditional halide spacer N-battery iodide, which achieved a power conversion efficiency of 16.25% and a high open voltage of 1.31
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Porous carbons: Structure-oriented design and versatile applications
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Phase Pure 2D Perovskite for High-Performance 2D–3D Heterostructured Perovskite Solar Cells
Pengwei Li,Yiqiang Zhang,Chao Liang,Guichuan Xing,Xiaolong Liu,Fengyu Li,Xiaotao Liu,Xiaotian Hu,Guosheng Shao,Yanlin Song +9 more
TL;DR: High-efficiency and ultrastable planar PSCs are demonstrated with these 2D-3D mixtures that minimize photogenerated charge-carrier localization in the low-dimensional perovskite.
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Mn-doped TiO2 nanopowders with remarkable visible light photocatalytic activity
TL;DR: In this article, TEM results showed that the synthesized TiO 2 powders were anatase nanoparticles about 7nm in size and a remarkable red shift of the absorption edge was achievable by increased Mn content, leading to gigantically narrowed energy gap to permit absorption well into the infrared spectral region.