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蔺子甄

发布日期:2023-02-25

蔺子甄   工程师

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联系方式:zz_lin@qny.chng.com.cn



研究方向:

微纳热物性及热输运:绝热材料、温差热电解耦



个人经历:

2022-至今,中国华能集团清洁能源技术研究院,主管

2018-2022,西安交通大学能动学院热流系,博士

2015-2018,中国矿业大学电力学院工程热物理系,硕士

2011-2015,中国矿业大学徐海学院热能系,学士


科研项目:

[1] 国家自然科学基金青年项目:表面修饰纳米颗粒的热物理性质研究,项目骨干。

[2] 国家重点研发计划“可再生能源技术”专项:大面积钙钛矿组件规模化制备技术及示范电站应用, 项目骨干。

[3] 国家林草局“揭榜挂帅”项目:南疆光伏治沙模式及配套技术研究,项目骨干。

[4] 国家工信部高性能光伏材料项目:钙钛矿光伏技术产业化的关键技术开发,项目骨干。


科研成果:

  以第一作者发表SCI论文14篇,授权专利20项,发布行业标准1项、团体标准1项。

[1] Zizhen Lin, Xiaofan Ping, Dongming Zhao and et als,A biomimetic non-woven fabric with passive thermal-insulation and active heat-recovering, Applied Energy, 2024, 353, 122027.

[2] Zizhen Lin, Xuankai Zhang, Xiaofan Ping and et als, Disordered configuration leads to decoupled conductivity and thermopower, Cell Reports Physical Science,2023, 4, 101457.

[3] Zizhen Lin, Xiaofan Ping, Dongming Zhao and et als, Construct Schottky interface containing energy-filtering effect: An efficient strategy to decouple thermopower and conductivity, Journal of Applied Physics, 2023, 134, 015101.

[4] Zizhen Lin, Yanzheng Du, Cheng Chi and et als, In situ triggering metallicity in 3D graphene via constructing wrinkle configuration, Applied Physics Letters, 2022, 120, 203503.

[5] Zizhen Lin, Yanzheng Du, Cheng Chi and et als,Energy-dependent carrier scattering at weak localizations leading to decoupling of thermopower and conductivity, Carbon, 2022, 194, 62-71.

[6] Zizhen Lin, Hao Dang, Chunyu Zhao and et als, The cross-interface energy-filtering effect at organic/inorganic interfaces balances the trade-off between thermopower and conductivity, Nanoscale, 2022, 26, 14, 9419-9430.

[7] Zizhen Lin and Hao Dang, Thermal conductivity prediction of C/CaO packing bed with molecular dynamics corrected effective medium model, Journal of Applied Physics, 2022, 131, 035104.

[8] Zizhen Lin,Yingying Lan and Congliang Huang, Reduced thermal conductivity of nanoparticle packed bed by hybrid design, International Journal of Heat and Mass Transfer, 2020, 162, 120340.

[9] Zizhen Lin, Congliang Huang and Yinshi Li, A generalized thermal conductivity model for nanoparticle packed bed considering particle deformation, International Journal of Heat and Mass Transfer, 2019, 129, 28-36.

[10] Zizhen Lin, Congliang Huang  and Zun Huang, Thermo-electric properties of Cu and Ni nanoparticles packed beds, Journal of Nanoscience and Nanotechnology, 2018, 18, 3413-3418.

[11] Zizhen Lin, Congliang Huang, Wenkai Zhen and Zun Huang, Enhanced thermal conductivity of metallic nanoparticle packed bed by sintering treatment, Applied Thermal Engineering, 2017, 119, 425-429.

[12] Zizhen Lin, Congliang Huang, Zun Huang and Wenkai Zhen, Surface/interface influence on specific heat capacity of solid, shell and core-shell nanoparticles, Applied Thermal Engineering, 2017, 127, 884-888.

[13] Zizhen Lin, Congliang Huang, Wenkai Zhen and et als,Experimental study on thermal conductivity and hardness of Cu and Ni nanoparticle packed bed for thermoelectric application, Nanoscale Research Letters, 2017, 12, 189.

[14] Zizhen Lin, Congliang Huang, Danchen Luo and et als, Thermal performance of metallic nanoparticles in air, Applied Thermal Engineering, 2016, 25,686-690.


获得奖励:

[1]中国电机工程学会“青年人才托举工程”

[2]“ATPC”第十二届亚洲热物性会议“Best Paper Award”

[3] 国家奖学金(2017年度)

[4] 国家奖学金(2016年度)

[5] 第四届中央企业熠星创新创意大赛(10/12)

[6] 工信部第一届能源电子产业创新大赛太阳能光伏赛道(8/12)

[7] 中国华能集团有限公司第一届高水平科技创新团队(骨干成员)

[8] 华能清能院科学技术进步一等奖(12/15)

[9] 《中国科学技术科学》优秀审稿人