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楊宏宇 職稱:講師 學科專業:能源環境科學 研究方向:電化學催化技術,燃料電池技術 聯系方式:[email protected] 湖北麻城人,中共黨員,工學博士,講師,2019年12月畢業于華南理工大學環境與能源學院,獲得工學博士學位。2020年5月進入beat365工作。主要從事《固體廢物處理與處置》、《工程經濟與項目管理》等專業核心課程的教學工作。主要研究方向為燃料電池、金屬空氣電池和產氫技術。參與過四項國家級、省部級科研項目,在Journal of Catalysis, Journal of colloid and Interface Science, Journal of Alloys and Compounds, Materials Science and Engineering B, Journal of Materials Science等雜志上以第一作者發表SCI論文5篇。參與編著《Advanced Nanomaterials for Electrochemical-based Energy Conversion and Storage》。 個人簡歷 ●2010.09—2014.07 長江大學,環境工程,學士●2014.09—2019.12 華南理工大學,環境科學與工程,博士●2020.05—至今 長江大學,beat365,講師 代表性成果 (1)獲獎情況華南理工大學優秀博士學位論文創新基金 2017.06(2)學術論文●HY, Yang; ZH, Tang; SW, Chen. et al. Bimetallic PdZn Nanoparticles for Oxygen Reduction Reaction in AlkalineMedium: The Effects of Surface Structure. J. Catal., 2020, 382: 181-191.●HY, Yang; ZH, Tang; SW, Chen. et al. Co@Pd Core-shell Nanoparticles Embedded in Nitrogen-doped Porous Carbonas Dual Functional Electrocatalysts for Both Oxygen Reduction and Hydrogen Evolution Reactions. J. Colloid Interf.Sci., 2018, 528:18-26.●HY, Yang; ZH, Tang; SW, Chen. et al. Peptide Capped Pd Nanoparticles for Oxygen Electroreduction: Strong SurfaceEffects. J. Alloy. Compd., 2017, 702: 146-152.●HY, Yang; ZH, Tang; SW, Chen. et al. The Reactivity Study of Peptide A3-Capped Gold and Silver Nanoparticles withHeavy Metal Ions. Mater. Sci. Eng. B, 2016, 210: 37-42.●HY, Yang; ZH, Tang; SW, Chen. et al. Shape and structural effects of R5-templated Pd nanomaterials as potent catalystfor oxygen electroreduction in alkaline media. J. Mater. Sci., 2017, 52: 8016-8026.●QN, Wang; HY, Yang; ZH, Tang. et al. Peptide A4 Based AuAg Alloyed Nanoparticle Networks for Electrocatalytic Reduction of Oxygen. Int. J. Hydrogen. Energ., 2017, 42(16): 11295-11303.(3)出版著作●F. Ran, and S.W. Chen,Z.H. Tang, H.Y. Yanget al. Advanced Nanomaterials for Electrochemical-based Energy Conversion and Storage[M]. Elsevier,2019.
楊宏宇
職稱:講師
學科專業:能源環境科學
研究方向:電化學催化技術,燃料電池技術
聯系方式:[email protected]
湖北麻城人,中共黨員,工學博士,講師,2019年12月畢業于華南理工大學環境與能源學院,獲得工學博士學位。2020年5月進入beat365工作。
主要從事《固體廢物處理與處置》、《工程經濟與項目管理》等專業核心課程的教學工作。主要研究方向為燃料電池、金屬空氣電池和產氫技術。參與過四項國家級、省部級科研項目,在Journal of Catalysis, Journal of colloid and Interface Science, Journal of Alloys and Compounds, Materials Science and Engineering B, Journal of Materials Science等雜志上以第一作者發表SCI論文5篇。參與編著《Advanced Nanomaterials for Electrochemical-based Energy Conversion and Storage》。
個人簡歷
●2010.09—2014.07 長江大學,環境工程,學士
●2014.09—2019.12 華南理工大學,環境科學與工程,博士
●2020.05—至今 長江大學,beat365,講師
代表性成果
(1)獲獎情況
華南理工大學優秀博士學位論文創新基金 2017.06
(2)學術論文
●HY, Yang; ZH, Tang; SW, Chen. et al. Bimetallic PdZn Nanoparticles for Oxygen Reduction Reaction in Alkaline
Medium: The Effects of Surface Structure. J. Catal., 2020, 382: 181-191.
●HY, Yang; ZH, Tang; SW, Chen. et al. Co@Pd Core-shell Nanoparticles Embedded in Nitrogen-doped Porous Carbon
as Dual Functional Electrocatalysts for Both Oxygen Reduction and Hydrogen Evolution Reactions. J. Colloid Interf.
Sci., 2018, 528:18-26.
●HY, Yang; ZH, Tang; SW, Chen. et al. Peptide Capped Pd Nanoparticles for Oxygen Electroreduction: Strong Surface
Effects. J. Alloy. Compd., 2017, 702: 146-152.
●HY, Yang; ZH, Tang; SW, Chen. et al. The Reactivity Study of Peptide A3-Capped Gold and Silver Nanoparticles with
Heavy Metal Ions. Mater. Sci. Eng. B, 2016, 210: 37-42.
●HY, Yang; ZH, Tang; SW, Chen. et al. Shape and structural effects of R5-templated Pd nanomaterials as potent catalyst
for oxygen electroreduction in alkaline media. J. Mater. Sci., 2017, 52: 8016-8026.
●QN, Wang; HY, Yang; ZH, Tang. et al. Peptide A4 Based AuAg Alloyed Nanoparticle Networks for Electrocatalytic Reduction of Oxygen. Int. J. Hydrogen. Energ., 2017, 42(16): 11295-11303.
(3)出版著作
●F. Ran, and S.W. Chen,Z.H. Tang, H.Y. Yanget al. Advanced Nanomaterials for Electrochemical-based Energy Conversion and Storage[M]. Elsevier,2019.
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