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个人简介

教育背景 2020 至今 华侨大学, 讲师 2016.06 至 2020.01 能源材料化学协同创新中心,厦门大学,博士后/特聘助理研究员 2013.01 至 2016.02 都灵大学, 意大利,博士 2009.09 至 2011.07 哈尔滨工业大学,哈尔滨,理学硕士 2005.09 至 2009.07 哈尔滨工业大学,哈尔滨,理学学士 研究方向 纳米团簇化学: 纳米材料以其优异性能而得到广泛的研究和应用,其体相及表界面的组成和行为决定了其功能的多样性,由此材料的精确研究对其设计与合成具有指导性意义。纳米团簇材料的研究,填补了现有表征手段不足,使得纳米材料能够在分子尺度上进行精确地研究,并为材料的改善、设计及应用提供理论基础。 CO2光/电催化: 利用分子材料的研究,过渡到复杂的多相材料的设计、制备,并将其统一起来,对化学、材料科学的发展具有非常重要的意义。如在针对温室气体CO2的催化还原基础研究中,分子材料、纳米材料、MOF等作为催化剂在光/电催化中得到了广泛的关注。通过设计不同金属有机化合物并对比其均相/异相电催化还原CO2性能,为其他相关材料的设计提供了必要的依据。 稀土MOF材料: MOF材料由于其配体和金属的多样性而呈现出多样的性能,从设计合成到应用探索都得到了广泛的研究。其中稀土金属的特殊性能为MOF带来了更多的可能,如拓扑结构的研究、光/电/磁性能的开发应用、生物活性探索及催化材料的制备等。在分子层次上理解纳米材料及MOF材料的基础上,基于稀土金属的各种材料的设计、开发及应用有着更为广阔的前景。

研究领域

纳米团簇化学 CO2光/电催化 稀土MOF材料

近期论文

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Sun, C., B. K. Teo, C. Deng, J. Lin, G.-G. Luo, C.-H. Tung, and D. Sun. 2021. Hydrido-coinage-metal clusters: Rational design, synthetic protocols and structural characteristics. Coordination Chemistry Reviews, 2021, 427. Shen, H., S. Xiang, Z. Xu, C. Liu, X. Li, C. Sun, S. Lin, B. K. Teo, and N. Zheng*. Superatomic Au13 clusters ligated by different N-heterocyclic carbenes and their ligand-dependent catalysis, photoluminescence, and proton sensitivity. Nano Research, 2020, 13 (7):1908-1911. Deng, C.#, C. Sun#, Z. Wang, Y. Tao, Y. Chen, J. Lin, G. Luo*, B. Lin, D. Sun*, and L. Zheng. A Sodalite-Type Silver Orthophosphate Cluster in a Globular Silver Nanocluster. Angew Chem Int Ed Engl., 2020, 59 (31):12659-12663. Luo, G. G., Q. L. Guo, Z. Wang, C. F. Sun, J. Q. Lin, and D. Sun. New protective ligands for atomically precise silver nanoclusters. Dalton Trans., 2020, 49 (17):5406-5415. Xiting Yuan, Cunfa Sun, Xihua Li, Sami Malola, Boon K Teo, Hannu Häkkinen,* Lan-Sun Zheng, Nanfeng Zheng*, Combinatorial Identification of Hydrides in a Ligated Ag40 Nanocluster with Non-compact Metal Core, J. Am. Chem. Soc., , 20219, 141 (30):11905-11911.. Sun C.#, Mammen N.#, Kaappa S., Yuan P., Deng G., Zhao C., Yan J., Malola S., Honkala K., Hakkinen, H., Teo B. K., Zheng N., Atomically Precise, Thiolated Copper-Hydride Nanoclusters as Single-Site Hydrogenation Catalysts for Ketones in Mild Conditions, ACS Nano, 2019, 13, 5975-5986. Yuan Peng#, Chen Ruihao#, Zhang Xiaomin, Chen Fengjiao, Yan Juanzhu, Sun Cunfa, Ou Daohui, Peng Jian, Lin Shuichao, Tang Zichao, Teo Boon K., Zheng Lan-Sun, Zheng Nanfeng. Ether-Soluble Cu53 Nanoclusters as an Effective Precursor of High-Quality CuI Films for Optoelectronic Applications, Angew. Chem. Int. Ed., 2019, 58, 835-839. Cunfa Sun, Laura Rotundo, Claudio Garino, Luca Nencini, Sam S. Yoon, Roberto Gobetto, and Carlo Nervi*, Electrochemical CO2 Reduction at Glassy Carbon Electrodes Functionalized by MnI and ReI Organometallic Complexes, ChemPhysChem, 2017,17, 3219-3229. C. Sun, R. Gobetto* and C. Nervi*, Recent Advances on Catalytic CO2 Reduction by Organometal Complexes Anchored on Modified Electrodes, New J. Chem., 2016,40, 5656-5661. Cunfa Sun, Simona Prosperini, Pierluigi Quagliotto, Guido Viscardi, Sam S. Yoon, Roberto Gobetto and Carlo Nervi*, Electrocatalytic reduction of CO2 by thiophene-substituted rhenium(I) complexes and by their polymerized films, Dalton Transactions, 2016,45, 14678-14688. Rui-Qing Fan*, Li-Yuan Wang, Ping Wang, Hong Chen, Cunfa Sun, Yu-Lin Yang, Qing Su. Syntheses, structures and luminescent properties of zero-/two-dimensional Cd(II) and Eu(III) complexes, Journal of Solid State Chemistry, 2012, 196, 332–340. Shuo Chen, Rui-Qing Fan*, Cunfa Sun, Ping Wang, Yu-Lin Yang, Qing Su, and Ying Mu. Synthesis, Structure and Luminescent Properties of Lanthanide-based 2D and 3D MOFs with 2,4′-Biphenyldicarboxylic Acid, Crystal Growth & Design, 2012, 12(3), 1337–1346.

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