王健敏-ag官网

 王健敏-ag官网
王健敏
2024-11-01 14:28  
                                                                 

 





基本信息

:讲师

所在系室能源与动力工程

ag官网的联系方式wjmahut@ahut.edu.cn

通信地址:安徽工业大学能源与环境学院,243002

教育背景

2015.9—2021.10 东北大学,材料学专业 博士研究生

2013.92015.7   东北大学,材料工程专业 硕士研究生

2009.9—2013.7  东北大学秦皇岛分校材料科学与工程专业 大学本科

研究方向

1、新能源转化材料设计、制备与应用,包括电催化分解水制氢、光电化学制氢等;

2、电化学储能材料设计,包括燃料电池、金属-空气电池等。

科研项目

1fe2o3/cafe2o4 异质结的制备及气相光催化降解vocs性能,国家自然科学基金青年基金,2013-201525万,参与;

2、复合金属氧化物催化材料的高通量制备与催化性能,国家重点研发计划,2017-2020135万,参与;

3、高通量红外隐身材料设计,东北大学国防引导项目,2019-202010万,参与;

4、染料敏化太阳能电池用tio2微纳电极的制备及性能研究,东北大学大学生科技创新项目,2010-20110.5万,主持。

代表性论文专著

[1] jianmin wang et al. nanoscale nickel-iron nitride-derived efficient electrochemical oxygen evolution catalysts[j]. catalysis science & technology, 2020, 10, 4458 (if=5.9 jcr 1)

[2] jianmin wang et al. ni/nio heterostructures encapsulated in oxygen doped graphene as multifunctional electrocatalysts for her, uor and hmf oxidation reaction [j]. catalysis science & technology, accepted (if=5.9 jcr 1)

[3] jianmin wang et al. defective fe3 self-doped spinel znfe2o4 with oxygen vacancies for highly efficient photoelectrochemical water splitting[j]. dalton transactions, 2019, 48, 11934  (if=4.174, jcr 1).

[4] jianmin wang et al. in situ fabrication of a-fe2o3/cafe2o4 p-n heterojunction with enhanced vocs photodegradation activity [j]. advanced powder technology, 2019, 30, 590-595. (if=4.27, jcr 1)

[5] li ying, jianmin wang et al. solar energy protects steels against corrosion: enhanced protection capability achieved by nifeox decorated bivo4 photoanode. materials research bulletin, 2018, 107: 416-420. (共同一作,if=2.873, jcr 2).

[6] jianmin wang et al. facile fabrication of α-fe2o3/ag2s heterojunction with enhanced photoelectrochemical water splitting property[j]. journal of nanoparticle research, 2018, 20: 218. (if=2.127, jcr 3)

[7] jianmin wang et al. fabrication of cafe2o4 nanofibers via electrospinning method with enhanced visible light photocatalytic activity[j]. functional materials letters, 2017, 10(5): 1750058. (if=2.0jcr 3)

[8] jianmin wang et al. structural and morphological modulation of biocl visible-light photocatalyst prepared via an in-situ oxidation synthesis[j]. chemical research in chinese universities, 2016, 32(3), 338-342. (if=1.248 , jcr 4)

[9] jianmin wang et al. synthesis of bivo4/bi2vo5.5 heterogeneous nanostructures with enhanced visible light photocatalytic activity[j]. materials science forum, 2016, 847, 211-217. (ei)


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