美高梅簡介

    美高梅4686高等研究院是美高梅4686新成立的一個包含本科與研究生培養、側重跨學科教學與研究的校內綜合辦學單位。作為美高梅4686內部探索全面改革創新的學術特區,高等研究院與香港和海外著名高校合作,借鑒國外研究型大學通行的管理模式,引進具有一流視野的資深教授和發展潛力的青年教師,營造與國際接軌的學術氛圍和培養環境,開展卓越的教學、研究和管理工作。 ······

研究生課程

趙偉

?博士,研究員

聯系方式:[email protected]

 

教育背景

2013,埃爾蘭根-紐倫堡大學 (德國),物理化學,博士

2009,中國科學技術大學,物理化學,碩士

2006,中國科學技術大學,應用物理,學士

 

工作經歷:

2018.07至今,美高梅4686高等研究院,研究員

2015.05-2018.06,華盛頓大學,研究助理

2014.04-2015.04,香港科技大學,博士后

研究興趣:

催化反應機理與催化劑優化設計:

–反應機理和反應活性位的確定與表征;

–“構效關系”研究;

–新型高效催化劑的設計與研發;

 

清潔能源技術與綠色化學:

–氫燃料電池,裂解水制氫,以及二氧化碳還原;

 

表面科學:

–應用STM,PES,FTIR等表面科學技術,在原子分子尺度上觀察研究表面物理和表面化學相關基礎科學問題;

榮譽和獲獎:

2018年 深圳市海外高層次人才C類

 

學術兼職:

在下列期刊擔任受邀審稿人:The Journal of Physical Chemistry, RSC Advances, Applied Surface Science, Journal of Physics:Condensed Matter, Surface Science, The Journal of Chemical Physics, Condensed Matter, MaterialsResearch Express, Journal of Nanoscience and Nanotechnology, Chinese Chemical Letters

 

著作:

Wei Zhao, Lei Dong, Ran Zhang and Nian Lin, " On-surface Coupling Reactions with Extrinsic Catalysts ", Chapter in: de Oteyza D., Rogero C. (eds) On-Surface Synthesis II. Advances in Atom and Single Molecule Machines. Springer, Cham, 2018, p195-207.

Wei Zhao, Christian Papp, and Hans-Peter Steinrück, "Heterographenes", Chapter in: “Encyclopedia of Polymeric Nanomaterials”; Kobayashi, S., Müllen, K., Eds.; Springer Berlin Heidelberg: Berlin, Heidelberg, 2015, p 924.

 

論文發表:

(27) Shuaipeng Xing,  Zhe Zhang, Xiyu Fei, Wei Zhao, Ran Zhang, Tao Lin, Danli Zhao, Huanxin Ju, Hu Xu, Jian Fan, Junfa Zhu, Yu-qiang Ma and Ziliang Shi, Selective On-Surface Covalent Coupling Based on Metal-Organic Coordination Template, Nature Communication, 10 (2019) , 70.

(26) Spencer J. Carey, Wei Zhao, Charles T. Campbell, Bond Energies of Adsorbed Intermediates to Metal Surfaces Correlate with H-Ligand and H-Surface Bond Energies and Electronegativities, Angewandte Chemie International Edition, 57 (2018), 16877..

(25)   Spencer J. Carey*,  Wei Zhao*, Elizabeth Harman, Ann-Katrin Baumann, Zhongtian Mao, Wei Zhang and Charles T. Campbell, Energetics of Adsorbed Methanol and Methoxy on Ni(111): Comparisons to Pt(111), ACS Catalysis,  8 (2018) 10089-10095. (Co-first Author)

(24)Spencer J. Carey, Wei Zhao, Charles T. Campbell, Energetics of Adsorbed Benzene on Ni(111) and Pt(111) by Calorimetry, Surface Science 676 (2018), 9-16. (Selected as Cover Page by Editor)

(23)Wei Zhao, Spencer J. Carey, Zhongtian Mao and Charles T. Campbell, Adsorbed Hydroxyl and Water on Ni(111): Heats of Formation by Calorimetry, ACS Catalysis, 8 (2018), 1485–1489.

(22)Wei Zhao, Andrew D. Doyle, Sawyer E. Morgan,  Michal Bajdich, Jens K. Nørskov and Charles T. Campbell, Formic Acid Dissociative Adsorption on NiO(111): Energetics and Structure of Adsorbed Formate, Journal of Physical Chemistry C, 121 (2017), 28001-28006.

(21)Wei Zhao, Spencer J. Carey, Sawyer E. Morgan and Charles T. Campbell, Energetics of Adsorbed Formate and Formic Acid on Ni(111) by Calorimetry, Journal of Catalysis, 352 (2017), 300-304.

(20)Spencer J. Carey, Wei Zhao, Amilla Frehner, Charles T. Campbell and Bret Earl Jackson, The Energetics of Adsorbed Methyl and Methyl Iodide on Ni(111) by Calorimetry: Comparison to Pt(111) and Implications for Catalysis, ACS Catalysis, 7 (2017), 1286–1294.

(19)Wei Zhao, Michal Bajdich, Spencer Carey, Aleksandra Vojvodic, Jens K. Nørskov and Charles T. Campbell, Water Dissociative Adsorption on NiO(111): Energetics and Structure of the Hydroxylated Surface, ACS Catalysis, 6 (2016), 7377-7384.

(18)Wei Zhao*, Lei Dong, Chao Huang, Zaw Myo Win and Nian Lin*, Cu- and Pd-Catalyzed Ullmann Reaction on a Hexagonal Boron Nitride Layer, Chemical Communication, 52 (2016), 13225-13228. (* 兼共同通訊作者)

(17)F. Späth, W. Zhao, C. Gleichweit, K. Gotterbarm, U. Bauer, O. Höfert, H.-P. Steinrück and C. Papp, Hydrogenation and Dehydrogenation of Nitrogen-doped Graphene investigated by X-Ray Photoelectron Spectroscopy, Surface Science, 634 (2015) 89.

(16)W. Zhao, J. Gebhardt, F. Späth, K. Gotterbarm, C. Gleichweit, H.-P. Steinrück, A. Görling, and C. Papp, Reversible Hydrogenation of Graphene on Ni(111) - Synthesis of 'Graphone', Chemistry – A European Journal,  21 (2015) 3347.

(15)C. Gleichweit, M. Amende, U. Bauer, S. Schernich, O. Höfert, M. P. A. Lorenz, W. Zhao, M. Müller, M. Koch,P. Bachmann, P. Wasserscheid, J. Libuda, H.-P. Steinrück, and C. Papp. Alkyl chain length-dependent surface reaction of dodecahydro-N-alkylcarbazoles on Pt model catalysts. Journal of Chemical Physics, 140 (2014) 204711.

(14)M. Amende, C. Gleichweit, S. Schernich, O. Höfert, M. P. A. Lorenz, W. Zhao, M. Koch, K. Obesser, C. Papp, P. Wasserscheid, H.-P. Steinrück, J. Libuda, Size and Structure Effects Controlling the Stability of the Liquid Organic Hydrogen Carrier dodecahydro-N-ethylcarbazole During Dehydrogenation over Pt Model Catalysts.  Journal of Physical Chemistry Letters, 5 (2014) 1498.

(13)M. Amende, C. Gleichweit, K. Werner, S. Schernich, W. Zhao, M. P. A. Lorenz, O. Höfert, C. Papp, M. Koch, P. Wasserscheid, M. Laurin, H.-P. Steinrück, J. Libuda, Model catalytic studies of liquid organic hydrogen carriers: Dehydrogenation and decomposition mechanisms of dodecahydro-N-ethylcarbazole on Pt(111). ACS Catalysis, 4 (2014) 657.

(12)O. Höfert, M. P. A. Lorenz, R. Streber, W. Zhao, A. Bayer, H.-P. Steinrück, C. Papp, Adsorption and reaction of acetylene on clean and oxygen-precovered Pd(100) studied with high-resolution X-ray photoelectron spectroscopy. Journal of Chemical Physics, 139 (2013) 164706.

(11)K. Gotterbarm, W. Zhao, O. Höfert, C. Gleichweit, C. Papp, H.-P. Steinrück,  Growth and oxidation of graphene on Rh(111). Physical Chemistry Chemical Physics, 15 (2013) 19625.

(10)W. Zhao, J. Gebhardt, K. Gotterbarm, O. Höfert, C. Gleichweit, C. Papp, A. Görling, H.-P. Steinrück, Gold intercalation of boron-doped graphene on Ni(111): XPS and DFT Study. Journal of Physics: Condensed Matter, 2013, 25, 445002.

(9)J. Gebhardt, R.J. Koch, W. Zhao, O. Höfert, K. Gotterbarm, S.Mammadov, C. Papp, A. Görling, H.-P. Steinrück, T. Seyller, Growth and Electronic Structure of Boron Doped Graphene. Physical Review B, 2013, 87, 155437.

(8)C. Gleichweit, M. Amende, S. Schernich, W. Zhao, M.P.A. Lorenz, O. Höfert, N. Brückner, P. Wasserscheid, J. Libuda, H.-P. Steinrück, C. Papp, Dehydrogenation of Dodecahydro-N-Ethylcarbazole on Pt(111). ChemSusChem 2013, 6, 974-977.

(7)X. Feng, W. Zhao, H. Ju, L. Zhang, Y. Ye, W. Zhang, J. Zhu, Electronic Structures and Chemical Reactions at the Interface between Li and Regioregular Poly (3-Hexylthiophene). Organic Electronics, 2012, 13, 1060-1067.

(6)R.J. Koch, M. Weser, W. Zhao, F. Viñes, K. Gotterbarm, S.M. Kozlov, O. Höfert, M. Ostler, C. Papp, J. Gebhardt, H.P. Steinrück, A. Görling, T. Seyller, Growth and Electronic Structure of Nitrogen-Doped Graphene on Ni(111). Physical Review B, 2012, 86, 075401.

(5)W. Zhao, O. Höfert, K. Gotterbarm, J.F. Zhu, C. Papp, H.P. Steinrück, Production of Nitrogen-Doped Graphene by Low-Energy Nitrogen Implantation. Journal of Physical Chemistry C, 2012, 116, 5062-5066.

(4)W. Zhao, S.M. Kozlov, O. Höfert, K. Gotterbarm, M.P.A. Lorenz, F. Viñes, C. Papp, A. Görling, H.-P. Steinrück, Graphene on Ni(111): Coexistence of Different Surface Structures. Journal of Physical Chemistry Letters, 2011, 2, 759-764.

(3)R. Streber, C. Papp, M. P. A. Lorenz, O. Höfert, W. Zhao, S. Wickert, E. Darlatt, A. Bayer, R. Denecke, and H. P. Steinrück, Influence of Steps on the Adsorption and Thermal Evolution of SO2 on Clean and Oxygen Precovered Pt Surfaces. . Journal of Physical Chemistry C, 2010, 114, 19734-19743.

(2)W. Zhao, Y. Guo, X. Feng, L. Zhang, W. Zhang, J. Zhu, Electronic Structure and Chemical Reaction of Ca Deposition on Regioregular Poly(3-Hexylthiophene) Surfaces. Chinese Science Bulletin, 2009, 54, 1978-1982.

(1)J. Zhu, F. Bebensee, W. Hieringer, W. Zhao, J.H. Baricuatro, J.A. Farmer, Y. Bai, H.-P. Steinrück, J.M. Gottfried, C.T. Campbell, Formation of the Calcium/Poly(3-Hexylthiophene) Interface: Structure and Energetics. Journal of the American Chemical Society, 2009, 131, 13498-13507.

 

會議報告:

(6)Served as the Moderator in the Session: “Recent Advances in the Chemistry and Physics of Interfaces” on Nov. 3, 2017, in AVS 64th International Symposium & Exhibition, Tampa, FL, USA., October-Novemeber, 2017.

(5)Calorimetric Energies of Small Adsorbates on Ni(111) and NiO(111) Surfaces, with Comparison to Pt(111) to Explain Differences in Catalytic Activity between Ni vs Pt, W. Zhao, Talk in AVS 64th International Symposium & Exhibition, Tampa, FL, USA., October-November, 2017.

(4)Energetics of Adsorbed Formate and Formic Acid on Ni(111) by Calorimetry, W. Zhao, Talk in ACS 254th National Meetings, Washington D.C., USA., August 2017.

(3)Energetics of Water Dissociative Adsorption on NiO(111)-2x2, W. Zhao, Talk in AVS 63rd International Symposium & Exhibition, Nashville, TN, USA., November 2016.

(2)Energetics of Adsorbed CH3 on Ni(111) by Calorimetry, W. Zhao, Talk in ACS National Meetings, San Diego, CA, USA, March 2016.

(1)Production of nitrogen-doped graphene, W. Zhao, Talk in Annual meeting of Hong Kong Physical Society, Hong Kong, May 2014.

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