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Yi Du
Researcher at Beihang University
Publications - 363
Citations - 12859
Yi Du is an academic researcher from Beihang University. The author has contributed to research in topics: Photocatalysis & Computer science. The author has an hindex of 50, co-authored 286 publications receiving 8281 citations. Previous affiliations of Yi Du include Chinese Academy of Sciences & Tsinghua University.
Papers
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Journal ArticleDOI
Efficient Ammonia Electrosynthesis from Nitrate on Strained Ruthenium Nanoclusters
Jie Li,Guangming Zhan,Jianhua Yang,Fengjiao Quan,Chengliang Mao,Yang Liu,Bo Wang,Fengcai Lei,Lejing Li,Alice W. M. Chan,Liangpang Xu,Yanbiao Shi,Yi Du,Yi Du,Weichang Hao,Po Keung Wong,Jianfang Wang,Shi Xue Dou,Shi Xue Dou,Lizhi Zhang,Jimmy C. Yu +20 more
TL;DR: It is reported that room-temperature nitrate electroreduction catalyzed by strained ruthenium nanoclusters generates ammonia at a higher rate than the Haber-Bosch process, highlighting the potential of nitrate Electroreduction in real-world, low-tem temperature ammonia synthesis.
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Ligand-assisted cation-exchange engineering for high-efficiency colloidal Cs1−xFAxPbI3 quantum dot solar cells with reduced phase segregation
Mengmeng Hao,Yang Bai,Stefan Zeiske,Long Ren,Junxian Liu,Yongbo Yuan,Nasim Zarrabi,Ningyan Cheng,Mehri Ghasemi,Peng Chen,Miaoqiang Lyu,Dongxu He,Jung-Ho Yun,Yi Du,Yun Wang,Shanshan Ding,Ardalan Armin,Paul Meredith,Gang Liu,Gang Liu,Hui-Ming Cheng,Hui-Ming Cheng,Hui-Ming Cheng,Lianzhou Wang +23 more
TL;DR: In this article, an effective oleic acid (OA) ligand-assisted cation exchange strategy was proposed for controllable synthesis of Cs1−xFAxPbI3 QDs across the whole composition range.
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Bismuth Oxybromide with Reasonable Photocatalytic Reduction Activity under Visible Light
Jun Shang,Weichang Hao,Weichang Hao,Xiao-Jun Lv,Tianmin Wang,Xiaolin Wang,Yi Du,Shi Xue Dou,Tengfeng Xie,Dejun Wang,Jiaou Wang +10 more
TL;DR: In this article, a bismuth-based photocatalyst, Bi24O31Br10, with reasonable reduction activity was reported, which showed that the bottom of the conduction band fits the electric potential requirements for splitting water to H-2.
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Two-dimensional metal-organic frameworks with high oxidation states for efficient electrocatalytic urea oxidation.
TL;DR: The excellent UOR performance is found to be partially due to the high active site density of the two-dimensional MOF, and largely because of the high oxidation state of the nickel species.
Journal ArticleDOI
Three-dimensional controlled growth of monodisperse sub-50 nm heterogeneous nanocrystals.
Deming Liu,Xiaoxue Xu,Xiaoxue Xu,Yi Du,Xian Qin,Yuhai Zhang,Chenshuo Ma,Shihui Wen,Shihui Wen,Wei Ren,Wei Ren,Ewa M. Goldys,James A. Piper,Shi Xue Dou,Xiaogang Liu,Dayong Jin,Dayong Jin +16 more
TL;DR: It is identified that the control over the ratio of OA− to OAH can be used to directionally inhibit, promote or etch the crystallographic facets of the nanoparticles, thus allowing the fabrication of a diverse library of monodisperse sub-50 nm nanoparticles.