Donghai Wu
21 Papers
Donghai Wu is an academic researcher. The author has contributed to research in topics: Chemistry & Catalysis. The author has an hindex of 5, co-authored 20 publications.
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Papers
Theoretical insights into the electroreduction of nitrate to ammonia on graphene-based single-atom catalysts.
TL;DR: In this article , a single atom catalyst (SAC) based on graphene represents one of the most promising eNO3RR catalysts, and the underlying catalytic mechanism and the intrinsic factors dictating the catalytic activity trend remain unclear.
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Catalytic active centers beyond transition metals: atomically dispersed alkaline-earth metals for electroreduction of nitrate to ammonia
TL;DR: Alkaline-earth (AE) metals have been rarely reported to be the active center in heterogeneous catalysis as mentioned in this paper , however, nature shows that Mg cofactors in enzymes exhibit super activity for biochemical reactions.
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High‐Density Oxygen Doping of Conductive Metal Sulfides for Better Polysulfide Trapping and Li2S‐S8 Redox Kinetics in High Areal Capacity Lithium–Sulfur Batteries
Yiyi Li,Haiwei Wu,Donghai Wu,Hairu Wei,Ya-ping Guo,Houyang Chen,Zhijian Li,Liang Wang,Chuanyin Xiong,Qingjun Meng,Hanbin Liu,Candace K. Chan +11 more
TL;DR: In this paper, high-density oxygen doping chemistry is introduced for making highly conducting, chemically stable sulfides with a much higher affinity to lithium polysulfides, which can make it outperform the pristine oxides and natively oxidized sulfides.
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Ultrahigh-Density Double-Atom Catalyst with Spin Moment as an Activity Descriptor for the Oxygen-Reduction Reaction
Peng Lv,Wenjing Lv,Donghai Wu,Gang Tang,Xun-Wang Yan,Zhansheng Lu,Dongwei Ma +6 more
TL;DR: In this article , the authors theoretically demonstrate the existence of UHD DACs, with a metal loading of +40 wt %, which are confirmed by systematic analyses of dynamic, thermal, mechanical, thermodynamic, and electrochemical stabilities.
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Altering Ligand Microenvironment of Atomically Dispersed CrN4 by Axial Ligand Sulfur for Enhanced Oxygen Reduction Reaction in Alkaline and Acidic Medium.
Yi-Fei Guo,Hengbo Yin,Feifei Cheng,Minhan Li,Shuren Zhang,Donghai Wu,Kaixi Cathy Wang,Yunhan Wu,Baocheng Yang,Jia-Nan Zhang +9 more
TL;DR: In this paper , the axial S ligand in S1 -Cr1 N4 ǫ-bonds (S1 Cr1 n4 C) was modulated to enhance SAs performances.
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