付彧

付彧

付彧,男,高級工程師,碩士生導師,中科院青促會會員。2008年本科畢業於清華大學化工系,2011年於中科院大學獲得碩士學位,2016年於中科院上海高等研究院獲得博士學位,目前任職於中國科學院上海高等研究院。目前研究方向集中於光電外場強化低碳烷烴、二氧化碳和水等資源小分子的催化轉化研究和套用,反應強化體系涉及電感應熱、電焦耳熱、光熱、冷電漿等,基於以上體系設計開發相關光電催化劑與反應器並深入研究C-H鍵、C-O鍵的高效活化和精準耦合。作為負責人承擔了國家自然科學基金、國家重點研發計畫子課題、中科院青促會人才專項、中科院創新基金、國際國內企業合作等項目。在Applied Catalysis B: Environmental、Chemical Engineering Journal等重要工程套用期刊上發表論文20餘篇,獲得專利授權5項。

基本介紹

  • 中文名:付彧
  • 國籍:中國
  • 畢業院校:清華大學
  • 學位/學歷:博士
人物經歷,科研成果,專利成果,出版信息,科研項目,

人物經歷

2012-09--2016-07 中科院上海高等研究院 有機化學博士
2008-09--2011-07 中國科學院大學 環境工程碩士
2004-09--2008-07 清華大學 化學工程學士

科研成果

專利成果

[1] 付彧, 張軍. 一種基於電磁感應加熱的逆水煤氣反應催化劑、製備方法及其套用. 2023106904992, 2023-06-12.
[2] 張軍, 黃金成, 付彧, 孫予罕. 一種自調節鐵氧體材料及其製備方法和套用. CN: CN108163898A, 2018-06-15.
[3] 黃金成, 孫予罕, 張軍, 付彧. 鐵酸鹽類儲氧材料及其前體和用途. CN: CN107649133A, 2018-02-02.
[4] 孫予罕, 付彧, 張軍. 一種用於甲烷三重整反應的高負載量催化劑及其製備方法和用途. CN: CN107008328A, 2017-08-04.
[5] 孫予罕, 張軍, 黃金成, 付彧. 一種兩步甲烷-二氧化碳重整製備醋酸原料氣的方法. CN: CN105502288A, 2016-04-20.
[6] 孫予罕, 付彧, 張軍. 一種動態鐵酸鹽儲氧材料及其套用. CN: CN105126852A, 2015-12-09.

出版信息

發表論文
[1] Ning Zhang, Yu Fu, Wenbo Kong, Bingrong Pan, Changkun Yuan, Shuqing Li, He Zhu, Jun Zhang. Defects influence photocatalytic NOCM product selectivity by controlling photogenerative carriers. JOURNAL OF ENVIRONMENTAL CHEMICAL ENGINEERING. 2023, 11(5): http://dx.doi.org/10.1016/j.jece.2023.110665.
[2] Shuqing Li, Yu Fu, Wenbo Kong, Jiyang Wang, Changkun Yuan, Bingrong Pan, He Zhu, Xia Chen, Yidan Zhang, Jun Zhang, Yuhan Sun. Tuning strong metal-support interactions to boost activity and stability of aluminium nitride supported nickel catalysts for dry reforming of methane. FUEL. 2023, 343: http://dx.doi.org/10.1016/j.fuel.2023.127918.
[3] 王濟陽, 張軍, 付彧. Investigation of Atom-Level Reaction Kinetics of Carbon-Resistant Bimetallic NiCo-Reforming Catalysts: Combining Microkinetic Modeling and Density Functional Theory. Acs Catalysis[J]. 2022, [4] Fu, Yu, Kong, Wenbo, Pan, Bingrong, Yuan, Changkun, Li, Shuqing, Zhu, He, Zhang, Jun. Boron-promoted Ni/MgO catalysts for enhanced activity and coke suppression during dry reforming of methane. JOURNAL OF THE ENERGY INSTITUTE[J]. 2022, 105: 214-220, http://dx.doi.org/10.1016/j.joei.2022.09.005.
[5] Kong, Wenbo, Fu, Yu, Shi, Lei, Li, Shenggang, Vovk, Evgeny, Zhou, Xiaohong, Si, Rui, Pan, Bingrong, Yuan, Changkun, Li, Shuqing, Cai, Fufeng, Zhu, He, Zhang, Jun, Yang, Yong, Sun, Yuhan. Nickel nanoparticles with interfacial confinement mimic noble metal catalyst in methane dry reforming. APPLIED CATALYSIS B-ENVIRONMENTAL[J]. 2021, 285: http://dx.doi.org/10.1016/j.apcatb.2020.119837.
[6] Wang, Jiyang, Fu, Yu, Kong, Wenbo, Jin, Feikai, Bai, Jieru, Zhang, Jun, Sun, Yuhan. Design of a carbon-resistant Ni@S-2 reforming catalyst: Controllable Ni nanoparticles sandwiched in a peasecod-like structure. APPLIED CATALYSIS B-ENVIRONMENTAL[J]. 2021, 282: http://dx.doi.org/10.1016/j.apcatb.2020.119546.
[7] Huang, Jincheng, Fu, Yu, Zhao, Yonghui, Zhang, Jun, Li, Shuqing, Li, Shenggang, Li, Guijun, Chen, Zhenpan, Sun, Yuhan. Anti-sintering non-stoichiometric nickel ferrite for highly efficient and thermal-stable thermochemical CO2 splitting. CHEMICAL ENGINEERING JOURNAL[J]. 2021, 404: http://dx.doi.org/10.1016/j.cej.2020.127067.
[8] Fu, Yu, Kong, Wenbo, Pan, Bingrong, Yuan, Changkun, Li, Shuqing, Zhu, He, Zhang, Jun. In situ redispersion of rhodium nanocatalyst for CO2 reforming of CH4. JOURNAL OF ENVIRONMENTAL CHEMICAL ENGINEERING[J]. 2021, 9(4): http://dx.doi.org/10.1016/j.jece.2021.105790.
[9] Hao, Jie, Cai, Fufeng, Wang, Jiyang, Fu, Yu, Zhang, Jun, Sun, Yuhan. The effect of oxygen vacancy of alkaline-earth metal Sr doped Sm2Zr2O7 catalysts in the oxidative coupling of methane. CHEMICAL PHYSICS LETTERS[J]. 2021, 771: http://dx.doi.org/10.1016/j.cplett.2021.138562.
[10] Kong, Wenbo, Fu, Yu, Zhang, Jun, Sun, Yuhan. Stabilized Ni nanoparticles derived from silicate via hydrothermal method for carbon dioxide reforming of methane. CHEMICAL PHYSICS LETTERS[J]. 2020, 739: http://dx.doi.org/10.1016/j.cplett.2019.137027.
[11] 付彧, 孫予罕. CH4-CO2重整技術的挑戰與展望. 中國科學:化學[J]. 2020, 50(7): 816-831, http://lib.cqvip.com/Qikan/Article/Detail?id=7102392140.
[12] Cai, Fufeng, Ibrahim, Jessica Juweriah, Fu, Yu, Kong, Wenbo, Li, Shuqing, Zhang, Jun, Sun, Yuhan. Methanol Steam Reforming over ZnPt/MoC Catalysts: Effects of Hydrogen Treatment. INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH[J]. 2020, 59(42): 18756-18770, http://dx.doi.org/10.1021/acs.iecr.0c03311.
[13] Cai, Fufeng, Ibrahim, Jessica Juweriah, Fu, Yu, Kong, Wenbo, Zhang, Jun, Sun, Yuhan. Low-temperature hydrogen production from methanol steam reforming on Zn-modified Pt/MoC catalysts. APPLIED CATALYSIS B-ENVIRONMENTAL[J]. 2020, 264: http://dx.doi.org/10.1016/j.apcatb.2019.118500.
[14] Li, Shuqing, Fu, Yu, Kong, Wenbo, Pan, Bingrong, Yuan, Changkun, Cai, Fufeng, Zhu, He, Zhang, Jun, Sun, Yuhan. Dually confined Ni nanoparticles by room-temperature degradation of AlN for dry reforming of methane. APPLIED CATALYSIS B-ENVIRONMENTAL[J]. 2020, 277: http://dx.doi.org/10.1016/j.apcatb.2020.118921.
[15] Cai, Fufeng, Lu, Peijing, Ibrahim, Jessica Juweriah, Fu, Yu, Zhang, Jun, Sun, Yuhan. Investigation of the role of Nb on Pd-Zr-Zn catalyst in methanol steam reforming for hydrogen. INTERNATIONAL JOURNAL OF HYDROGEN ENERGY[J]. 2019, 44(23): 11717-11733, https://www.webofscience.com/wos/woscc/full-record/WOS:000468710100033.
[16] Fufeng Cai, Peijing Lu, Jessica Juweriah Ibrahim, Yu Fu, Jun Zhang, Yuhan Sun. Investigation of the role of Nb on Pd−Zr−Zn catalyst in methanol steam reforming for hydrogen production. INTERNATIONAL JOURNAL OF HYDROGEN ENERGY. 2019, 44(23): 11717-11733, http://dx.doi.org/10.1016/j.ijhydene.2019.03.125.
[17] Kong, Wenbo, Fu, Yu, Guan, Cairu, Pan, Bingrong, Yuan, Changkun, Li, Shuqing, Cai, Fufeng, Zhang, Jun, Sun, Yuhan. Facile Synthesis of Highly Coking-Resistant and Active Nickel-Based Catalyst for Low-Temperature CO2 Reforming of Methane. ENERGY TECHNOLOGY[J]. 2019, 7(9): http://dx.doi.org/10.1002/ente.201900521.
[18] Huang, Jincheng, Fu, Yu, Li, Shuqing, Kong, Wenbo, Zhang, Jun, Sun, Yuhan. Cobalt-based ferrites as efficient redox materials for thermochemical two-step CO2-splitting: enhanced performance due to cation diffusion. SUSTAINABLE ENERGY & FUELS[J]. 2019, 3(4): 975-984, http://dx.doi.org/10.1039/c8se00611c.
[19] Huang, Jincheng, Fu, Yu, Kong, Wenbo, Zhang, Jun, Sun, Yuhan. Differences in the Nature of Reaction Process for Thermochemical CO2 Splitting over NiFe2O4-Based Materials. ENERGY TECHNOLOGY[J]. 2019, 7(5): http://dx.doi.org/10.1002/ente.201800523.
[20] Huang, Jincheng, Fu, Yu, Li, Shenggang, Kong, Wenbo, Zhang, Jun, Sun, Yuhan. Enhanced activity of Mg-Fe-O ferrites for two-step thermochemical CO2 splitting. JOURNAL OF CO2 UTILIZATION[J]. 2018, 27: 450-458, http://dx.doi.org/10.1016/j.jcou.2018.06.014.
[21] Fu, Yu, Li, Shenggang, Zhang, Jun, Sun, Yuhan. Effective Macroporous Core-Shell Structure of Alumina-Supported Spinel Ferrite for Carbon Dioxide Splitting Based on Chemical Looping. ENERGY TECHNOLOGY[J]. 2016, 4(11): 1349-1357, [22] Fu, Yu, Zhang, Jun, Li, Shenggang, Huang, Jincheng, Sun, Yuhan. Self-regeneration of ferrites incorporated into matched matrices for thermochemical CO2 splitting. JOURNAL OF MATERIALS CHEMISTRY A[J]. 2016, 4(14): 5026-5031, https://www.webofscience.com/wos/woscc/full-record/WOS:000373119500003.

科研項目

( 1 )高溫催化過程電氣化再造技術研發,78萬元,主持,企業橫向,2023-07--2024-06
( 2 )碳酸鹽催化分解與合成氣酯化反應催化劑規模化製備,70萬元,主持,科技部重點研發計畫子課題,2022-12--2027-11
( 3 )中科院青年創新促進會人才專項,80萬元,主持,中科院人才支撐體系專項,2022-01--2025-12
( 4 ) 表面富含活性氧Ni納米顆粒的創製及其套用於CH4-CO2重整反應研究, 29.3萬元,主持, 國家自然科學基金青年項目, 2020-01--2022-12
( 5 )Self-regeneration materials for solar-driven fuel production based on two-step thermochemical cycles,205萬元,主持,荷蘭皇家殼牌前瞻科學基金項目,2018-01--2019-12
( 6 )電漿-兩步循環法耦合分解 CO2的關鍵儲氧材料,20萬元,主持,中科院上海高研院交叉學科青年創新基金項目,2017-01--2018-12

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