张黎明

个人信息Personal Information

学科:物理化学

曾获荣誉:

2017  曾获荣誉当选:  入选海外高层次人才引进计划

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论文成果 Publications

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12.Huoliang Gu, Jing Wu and Liming Zhang*, Recent advances in the rational design of single-atom catalysts for electrochemical CO2 reduction. Nano Res. 2022 in revision (invited review)

11. Chenyuan Zhu, Zhibin Zhang, Lixiang Zhong, Siwen Zhao, Guoshuai Shi, Bowen Wu, Huoliang Gu, Jing Wu, Xinyang Gao, Kaihui Liu and Liming Zhang*,  Enhanced electrochemical CO2-to-C2+ conversion from synergistic interaction between terrace and step sites on monocrystalline high-index Cu facets. J. Energy Chem. 2022  in revision.

10.Chenyuan Zhu, Siwen Zhao, Guoshuai Shi and Liming Zhang*, Structure-function correlation and dynamic reconstructuring of Cu for highly efficient electrochemical CO2 conversion. ChemSusChem 2022 doi:10.1002/cssc.202200068R1 (Invited review)

9.Chen Pan#, Jinyu Chao#, Fushuang Niu, Songhai Xie, Haoyang Gu, Tianhui Su, Ke Hu, Dan-Wei Zhang*, Ke Liu, Guangfeng Liu, Tengfeng Xie, Zhan-Ting Li*and Liming Zhang*Encapsulating semiconductor quantum dots in supramolecular metal-organic frameworks for superior photocatalytic hydrogen evolution. Adv. Mater. Interf2022, 9, 2101678. (Link)

8. Huoliang Gu#, Lixiang Zhong#, Guoshuai Shi, Jiaqiang Li, Ke Yu, Jiong Li, Shuo Zhang, Chenyuan Zhu, Shaohua Chen, Chunlei Yang, Ya Kong, Chen Chen, Shuzhou Li*, Jin Zhang* and Liming Zhang*Graphdiyne/graphene heterostructure: a universal 2D scaffold anchoring mono-dispersed transition-metal phthalocyanines for selective and durable CO2 electroreduction. J. Am. Chem. Soc. 2021,143, 8679-8688. (Link) 

7. Shaohua Chen#, Chenyuan Zhu#, Haoyang Gu, Li Wang, Jiajie Qi, Lixiang Zhong, Zhibin Zhang, Chunlei Yang, Guoshuai Shi, Siwen Zhao, Shuzhou Li, Kaihui Liu*, and Liming Zhang*, Enhanced electrochemical methanation of carbon dioxide at single-layer hexagonal-boron nitride/Cu interfacial perimeter. Nano Lett. 2021, 21, 4469-4476. (Link)

6. Lixiang Zhong, Liming Zhang* and Shuzhou Li*, Understanding the activity of carbon-based electrocatalysts from ab-initio simulations. ACS Mater. Lett. 2021, 3, 110-120.(Link)

5. Chenyuan Zhu#, Zhibin Zhang#, Lixiang Zhong#, Chia-Shuo Hsu#, Xiaozhi Xu, Yingzhou Li, Siwen Zhao, Shaohua Chen, Jiayi Yu, Shulin Chen, Mei Wu, Peng Gao, Shuzhou Li*, Hao Ming Chen*, Kaihui Liu*, and Liming Zhang*Product-specific active site motifs of Cu for electrochemical CO2 reduction. Chem, 2021, 7, 406-420. (Link) (Review and Highlights )(PDF Chem.pdfHighlight.pdf)

4. Haoyang Gu, Guoshuai Shi, Hsiao-Chien Chen, Songhai Xie, Yingzhou Li , Haonan Tong, Chunlei Yang, Chenyuan Zhu, J. Tyler Mefford, Heyi Xia, William C. Chueh, Hao Ming Chen and Liming Zhang*Strong catalyst-support interactions in electrochemical oxygen evolution on Ni-Fe layered double hydroxide, ACS Energy Lett. 2020, 5, 3185–3194.(Link)

3. Jiakang Tang, Chenyuan Zhu, Tianwen Jiang, Lei Wei, Hui Wang, Ke Yu, Chunlei Yang, Yuebiao Zhang, Chen Chen, Zhanting Li, Danwei Zhang*, and Liming Zhang* Anion exchange-induced well dispersion of cobalt porphyrins in a cationic porous organic polymer for enhanced electrochemical CO2 reduction via secondary-coordination sphere interactions. J. Mater. Chem. A 2020, 8, 18677-18686.(Link)

2. Chunlei Yang, Honghao Zhang, Ke Yu, Songhai Xie, Haonan Tong, Yao Song, Guoshuai Shi, Haoyang Gu, Chen Chen, Liming Zhang*, Stoichiometry-Dependent Oxygen Evolution Electrocatalysis on Open-Tubular Nitrogen-Doped Carbon Column Supported Transition Metal Oxides. ACS Appl. Energy Mater. 2020, 3, 2010-2019.(Link)

1. J. Tyler Mefford*,Andrew R. Akbashev, Liming Zhang, William C. Chueh* Electrochemical Reactivity of Faceted β-Co(OH)2 Single Crystal Platelet Particles in Alkaline Electrolytes, J. Phys. Chem. C. 2019, 123, 18783-18794.(Link)


Selected Publications (first author and co-first author#) Before Fudan:

11. L. M. Zhang#, L. Sun#, Z. X. Guan, S. C. Lee, Y. Z. Li, D. Deng, Y. Y. Li, N. A. Ahlborg, M. Boloor, N. A. Melosh, W. C. Chueh*, Quantifying & elucidating thermally-enhanced minority carrier diffusion length using radius-controlled rutile nanowires. Nano Lett. 2017, 17, 5264-5272. (Link)

10. L. M. Zhang#, X. F. Ye#, M. Boloor, A. Poletayev, N. A. Melosh, W. C. Chueh*, Significantly enhanced photocurrent for water oxidation in monolithic Mo: BiVO 4/SnO 2/Si by thermally increasing the minority carrier diffusion length. Energy Environ. Sci. 2016, 9, 2044-2052. (Cover) (Link)

9. L. M. Zhang#, C. Liu#, A. B. Wong, J. Resasco, P. D. Yang*, MoS2-wrapped silicon nanowires for photoelectrochemical water reduction. Nano Res. 2015, 8, 281. (Link)

8. L. M. Zhang, Z. F. Liu, Photochemistry of Graphene, Photofunctional Layered Materials, 2015, Volume 166 of the series: Structure and Bonding, 213-238.

7. K. H. Liu#L. M. Zhang#, T. Cao, C. Jin, D. Qiu, Q. Zhou, A. Zettl, P. D. Yang, S. G Louie, F. Wang*, Evolution of interlayer coupling in twisted molybdenum disulfide bilayers. Nat. Commun. 2014, 5, 4966. (Link)

6. L. M. Zhang# ,K. H.  Liu#, A. B. Wong, J. Kim, X. Hong, C. Liu, T. Cao, S. G. Louie, F. Wang*,  P. D. Yang*, Three-dimensional spirals of atomic layered MoS2. Nano Lett. 2014, 14, 6418-6423. (Link)

5. L. Zhou#L. M. Zhang# ,L. Liao, M. M. Yang, Q. Xie, H. L. Peng, Z. R. Liu, Z. F. Liu*, Photochemical Modification of Graphenening. Acta Chim. Sinica2014, 72, 289-300. 

4. L. M. Zhang, J. W. Yu, M. M. Yang, Q. Xie, H. L. Peng, Z. F. Liu, Janus graphene from asymmetric two-dimensional chemistry. Nat. Commun. 2013, 4, 1443.(Link)

3. L. M. Zhang#, L. Zhou#, M. M. Yang, Z. R. Liu, Q. Xie, H.L. Peng*, Z. F. Liu*, Photo‐induced free radical modification of graphene. Small 2013, 9, 1134-1143.(Link)

2. Y. F. Nie#L. M. Zhang#, D. Wu, Y. B. Chen, G. M. Zhang, Q.  Xie, Z. F. Liu*, Photocatalytic Engineering of Single‐Walled Carbon Nanotubes: From Metal‐to‐Semiconductor Conversion to Cutting and Patterning. Small 2013, 9, 1336-1341.(Link)

1. L. M. Zhang, S. Diao, Y. F. Nie, K. Yan, N. Liu, B. Dai, Q. Xie, A. Reina, J. Kong, Z. F. Liu*, Photocatalytic patterning and modification of graphene. J. Am. Chem. Soc. 2011, 133, 2011, 2706-2713. (Highlighted by Nature, 2011, 470, 308; Nature China, DOI:10.1038/nchina. 2011.14).(Link)