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闫长增

  • 副研究员
  • 电话:64355111—6526
  • 邮箱:czyan@sjtu.edu.cn
  • 办公地点:东部行政楼110室

学术经历

2009.09 - 2014.08. 韩国成均馆大学,先进纳米科技研究院,硕士&博士学位,纳米科学专业。

工作经历

2014.09 – 2017.03   南京大学, 化学化工学院,助理研究员

2017.06 – 2019.10   中国科学院深圳先进技术研究院,集成所,助理研究员(PI)

2019.11 – 2023.08   中国科学院兰州化学物理研究所,羰基合成与选择性氧化国家重点实验室,项目副研究员

2023.09 – 至今         best365网页版登录官网,副研究员

研究方向

1.新型有序微纳米催化材料的设计、制备及其CO2光/电催化机理和应用

2.铝基等二维材料、碲基三维组装材料的创新制备和配位调控CO2催化

3.均、多相能源催化材料及系统组装

主讲课程

1.《Introduction to Nanoscience and Nanotechnology》

科研项目

1.中科院协同创新联盟合作基金(HZJJ23-5),电子级捕集提纯CO2及其晶格匹配P-N异质结光催化转化协同研究,2023/01-2024/12, 50万元,主持人,在研。

2.国家自然科学基金青年基金(61904190), 纳米银和硫化钨协同降低氮化硼纳米管基热界面材料界面热阻的机理研究, 2020/01-2022/12, 26万元,主持人,已结题。

3.江苏省自然科学基金青年基金 (BK20150571),高效Ag/TiO2/ZnTe纳米异质结光催化剂利用紫外-可见光同时制备氢气和氧气的研究,2015/7-2018/6,20万元,主持人,已结题。

4.中国博士后基金面上基金 (2015M580408),表面等离子体增强的ZnO/ZnTe纳米P-N结用于光全水解,2015/07-2017/06,一等资助,8万元,主持人,已结题。

5.国家重点研发专项 (2017YFB0406000),高性能热界面材料基础研究,2017/07-2021/06,1185.5万元,子课题负责人,已结题。

代表性论文

1.Changzeng Yan, Xiaolan Xue, Dae Joon Kang,* Jie Liu,* Zhong Jin,* Well-designed Te/SnS2/Ag Artificial Nanoleaves for Enabling and Enhancing Visible-Light Driven Overall Splitting of Pure Water, Nano Energy, 2017, 39, 539–545.

2.Chao Ji, Ying Wang, Zhenqiang Ye, Xiaoliang Zeng, Changzeng Yan,* Rong Sun,* Dae Joon Kang,* ACS Applied Materials & Interfaces, 2020, 12, 21, 24298–24307.

3.Chao Ji, Ying Wang, Shuxian Xiong, Fengrui Zhou, Changzeng Yan,* Yayun Li, Rong Sun,* Ching-Ping Wong, Composites Part B-Engineering, 2018, 163: 363-370.

4.Jiahui Chen, Yanfeng Zhang, Changzeng Yan,* Rong Sun,*, Metal-Organic Framework-Derived CoxFe1-xP Nanoparticles Encapsulated in N Doped Carbon as Efficient Bifunctional Electrocatalysts for Overall Water Splitting, ACS Applied Energy Materials, 2019, 2, 2734-2742.

5.Chenjie Fu,# Changzeng Yan,# Xiaoliang Zeng,* Rong Sun,* Jianbin Xu, Ching-Ping Wong, Composites Science and Technology, 2019, 177: 118–126.

6.Xiaoliang Zeng,# Changzeng Yan,# Rong Sun,* Advanced Electronic Materials, 2018: 1800612 (1-10).

国家发明专利

1.李跃辉,闫长增,王忠科,一种环保型类球纳米碳酸钙的高效制备方法,2022.08.19,中国,申请号202210998626.0 (发明专利)

2.李跃辉,闫长增,杜民兴,一种银包覆铜晶粒或铜粉的制备方法,2022.08.17,中国,申请号202210984468.3 (发明专利)

3.闫长增,于天航,一种电热膜,2017.12.5-2027.12.5,中国,ZL 201721685432.6 (实用新型专利)

4.李跃辉,闫长增,一种高导热三元聚合物复合材料及其制备方法,2022.11.07,中国,申请号202211387859.3(发明专利)

5.闫长增,于天航,孙蓉,导热复合材料及其制备方法和应用,2017.11.23,中国,ZL201711182859.9 (发明专利)

6.孙蓉,闫长增,王英,纪超,一种导热复合材料及其制备方法,ZL201910764688.3,中国(发明专利)

7.孙蓉,闫长增,纪超,一种MXene/金属复合气凝胶、其制备方法、用途及包含其的热界面材料,WIPO专利,CN201910925938.7,(发明专利)

8.金钟,薛晓兰,王艳荣,闫长增,一种SnS微米花的制备方法及其在镁电池中的应用,CN110015683,(发明专利)

9.金钟,王艳荣,薛晓兰,闫长增,一种以富含氧缺陷的氧化锡纳米片为正极的镁电池,CN109935826A(发明专利)

学术兼职

1.Nanotechnology (中科院二区)Coatings (中科院二区)Materials (中科院三区)Current Nanoscience (中科院四区),等期刊编辑和编委

2.美国化学会会员,韩国物理学会会员,中国微米纳米技术学会高级会员,深圳市科技专家库专家,广东省科技军民融合专家库专家

3.山东省企业科技特派员

国际会议

1.Ying Wang, Chao Ji, Changzeng Yan,* Rui Cao, Rong Sun,* Ching-Ping Wong, Oriented Electrospun Carbon Nanofibers for Improved Through-plane Thermal Conductivity, The 21th International Conference on Electronic Materials and Packaging (EMAP), (2019), Hong Kong, China (Oral).

2.Ying Wang, Chao Ji, Changzeng Yan,* Rong Sun,* Ching-Ping Wong, Improved Thermal Conductive Property of Pine Needle Derived Carbon for Thermal Management Applications, The 20th International Conference on Electronic Materials and Packaging (EMAP), (2018), Hong Kong, China (Oral).

3.Changzeng Yan, Chao Ji, “Fabrication and Thermal Conduction Mechanism of Epoxy/Modified SiC NP Polymer Composites”, The 18th International Conference on Electronic Packaging Technology (ICEPT), (2017) Harbin, China.

4.Changzeng Yan, “Visible Light Sensitve Ag Decorated Te/SnS2 Nano-shish-kebab for Overall Water Splitting”, International Conference on Advances in Functional Materials (AFM) 2016, Jeju Island, South Korea, (Invited Speaker, Session Chair).

5.Changzeng Yan, Zhong Jin, “Rational Design of Carbon/inorganic Nanostructures for Efficient Energy Conversion and Storage”, The 11th Sino-US Synmposium on Nanoscale Science and Technology, (2016) Nanjing, China.

6.Changzeng Yan and Dae Joon Kang, “P-N Junction based ZnTe/ZnO Nanoganoderma as a UV-Vis Light Sensitive Photocatalyst”, The 2nd International Symposium on Engineering and Natural Sciences, (2014) Beijing, China (Oral).

7.Changzeng Yan and Dae Joon Kang, “SPR Enhanced Superefficient ZnTe/ZnO/Ag Nanoganoderma Structure as a UV-Vis Light Photocatalyst” Korean Physical Society, (2014) Daejeon, Korea (Oral).

荣誉奖励

1.2020年入选深圳市龙华区“龙舞华章”B类人才

2.2017年入选深圳市南山区“领航人才”

3.2017年入选深圳市海外高层次“孔雀计划”C类人才

4.英国物理学会(IOP)旗下Nanotechnology“2018年度杰出审稿人奖”