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个人简介

教育背景 2008-2012 南京大学,本科 2013-2018 西班牙瓦伦西亚理工大学,博士 (导师:Avelino Corma) 2018-2020 西班牙瓦伦西亚理工大学,博士后 (导师:Avelino Corma) Selected Honors and Awards 2021 IUPAC-Zhejiang NHU International Award for Advancements in Green Chemistry 2020 Young Scientist Award, International Association of Catalysis Societies 2020 XV Premi Cientificotècnic Ciutat d’Algemesí 2019 Finalist of 2019 Reaxys PhD Prize, Elsevier 2019 Graduate Student Gold Award, Materials Research Society 2018 PhD Cum Laude, Universitat Politècnica de València 2018 European Young Chemist Award, Silver Medal, European Chemical Society 2018 ACS Catalysis Award for Early Career Researcher 2017 Chinese Government Award for Outstanding Self-Financed Students Abroad

研究领域

课题组主要从事多相催化方向的研究,尤其关注固体催化材料(特别是基于分子筛的多孔材料)的可控合成及其在能源和环境领域的应用。在开展基础研究(比如发展新的材料合成手段以及表征方法从而从分子、原子尺度理解催化剂的工作原理和结构演化行为)的同时,将特别关注在工业界有应用潜力的课题,期望能够实现基础研究到工业应用的转化。

近期论文

查看导师新发文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

L. Liu*, A. Corma* Bimetallic Sites for Catalysis: From Binuclear Metal Sites to Bimetallic Nanoclusters and Nanoparticles. Chemical Reviews, 2023, doi: 10.1021/acs.chemrev.2c00733. H. Wan, N. Gong, L. Liu* Solid catalysts for the dehydrogenation of long-chain alkanes: lessons from the dehydrogenation of light alkanes and homogeneous molecular catalysis. Science China Chemistry, 2022, 65, 2163-2176. W. Chen#, S. Yang#, H. Liu, F. Huang, Q. Shao, L. Liu*, J. Sun, C. Sun*, D. Chen, L. Dong Single-Atom Ce-Modified α-Fe2O3 for Selective Catalytic Reduction of NO with NH3. Environmental Science & Technology, 2022, 56, 10442-10453. L. Liu* Two-dimensional PdOx rafts as superior catalysts for methane combustion. Science China Chemistry, 2022, 65, 643–644. L. Liu* …. together with other authors. A Career in Catalysis: Avelino Corma. ACS Catalysis, 2022, 12, 7054-7123. L. Liu*, M. Lopez-Haro, J.A. Perez-Omil, M. Boronat, J.J. Calvino and A. Corma* Direct assessment of confinement effect in zeolite-encapsulated subnanometric metal species. Nature Communications, 2022, 13, 821. L. Liu* Multiscale Structural Characterizations of Shaped Catalysts. Trends in Chemistry, 2021, 3, 898-901. L. Liu, M. Lopez-Haro, J. J. Calvino and A. Corma* Tutorial: structural characterization of isolated metal atoms and subnanometric metal clusters in zeolites. Nature Protocols, 2021, 16, 1871-1906. L. Liu and A. Corma* Confining isolated atoms and clusters in crystalline porous materials for catalysis. Nature Reviews Materials, 2021, 6, 244-263. L. Liu and A. Corma* Structural transformations of solid electrocatalysts and photocatalysts. Nature Reviews Chemistry, 2021, 5, 256-276. L. Liu and A. Corma* Isolated metal atoms and clusters for alkane activation: translating knowledge from enzymatic and homogeneous to heterogeneous systems. Chem, 2021, 7, 2347-2384. L. Liu and A. Corma* Identification of the active sites in supported subnanometric metal catalysts. Nature Catalysis, 2021, 4, 453-456. L. Liu, M.J. Climent, S. Iborra* Biomass Processing via Base Catalysis. Biomass Valorization: Sustainable Methods for the Production of Chemicals. pp 57-80. Wiley, 2021. K.S. Arias#, L. Liu#, A. Garcia-Ortiz, M.J. Climent, P. Concepcion, S. Iborra*, A. Corma* Bimetallic CuFe nanoparticles as active and stable catalysts for chemoselective hydrogenation of biomass-derived platform molecules. Catalysis Science & Technology, 2021, 11, 3353-3363. M. Puche, L. Liu, P. Concepción, I. Sorribes*, A. Corma* Tuning the Catalytic Performance of Cobalt Nanoparticles by Tungsten Doping for Efficient and Selective Hydrogenation of Quinolines under Mild Conditions. ACS Catalysis, 2021, 11, 8197–8210. A. Sattler*, M. Paccagnini, L. Liu, E. Gomez, H. Klutse, A.W. Burton, A. Corma* Assessment of metal-metal interactions and catalytic behavior in platinum-tin bimetallic subnanometric clusters by using reactive characterizations. Journal of Catalysis, 2021, 404, 393-399. L. Liu, M. Lopez-Haro, C. W. Lopes, S. Rojas-Buzo, P. Concepcion, R. Manzorro, L. Simonelli, A. Sattler, P. Serna, J. J. Calvino and A. Corma*. Structural modulation and direct measurement of subnanometric bimetallic PtSn clusters confined in zeolites. Nature Catalysis, 2020, 3, 628-638. L. Liu, M. Lopez-Haro, D.M. Meira, P. Concepcion, J.J. Calvino and A. Corma*. Regioselective Generation of Single‐Site Ir Atoms and their Evolution into Stabilized Subnanometric Ir Clusters in MWW Zeolite. Angew. Chem. Int. Ed., 2020, 59, 15695-15702. L. Liu and A. Corma*. Evolution of Isolated Atoms and Clusters in Catalysis. Trends in Chemistry, 2020, 2, 383-400. L. Liu, M. Lopez-Haro, C.W. Lopes, D.M. Meira, P. Concepcion, J. J. Calvino and A. Corma*. Atomic-Level Understanding on the Evolution Behavior of Subnanometric Pt and Sn Species during High-Temperature Treatments for Generation of Dense PtSn Clusters in Zeolites. Journal of Catalysis, 2020, 391, 11-24. L. Liu, M. Lopez-Haro, C. W. Lopes, C. Li, P. Concepcion, L. Simonelli, J. J. Calvino and A. Corma*. Regioselective generation and reactivity control of subnanometric platinum clusters in zeolites for high-temperature catalysis.Nature Materials, 2019, 18, 866-873. L. Liu, D.M. Meira, R. Arenal, P. Concepcion, A.V. Puga, A. Corma*. Determination of the Evolution of Heterogeneous Single Metal Atoms and Nanoclusters under Reaction Conditions: Which Are the Working Catalytic Sites? ACS Catalysis 2019, 9, 10626-10639 L. Liu, R. Arenal, D.M. Motta and A. Corma*. Generation of Gold Nanoclusters Encapsulated in MCM-22 Zeolite for Aerobic Oxidation of Cyclohexane. Chemical Communications, 2019, 55, 1607-1610. L. Liu, P. Concepcion and A. Corma*. Modulating the catalytic behavior of non-noble metal nanoparticles by inter-particle interaction for chemoselective hydrogenation of nitroarenes into corresponding azoxy or azo compounds. Journal of Catalysis, 2019, 369, 312-323. E. Fernández#, L. Liu#, M. Boronat, R. Arenal, P. Concepcion and A. Corma*. Low-Temperature Catalytic NO Reduction with CO by Subnanometric Pt Clusters. ACS Catalysis 2019, 9, 11530-11541. A. Liu#, L. Liu#, Y. Cao#, J. Wang, R. Si*, F. Gao* and L. Dong. Controlling Dynamic Structural Transformation of Atomically Dispersed CuOx Species and Influence on Their Catalytic Performances. ACS Catalysis 2019, 9, 9840-9851. A. Liu#, X. Liu#, L. Liu, Y. Pu, K. Guo, W. Tan, S. Gao, Y. Luo, S. Yu, R. Si, B. Shan, F. Gao* and L. Dong. Getting Insights into the Temperature-Specific Active Sites on Platinum Nanoparticles for CO Oxidation: A Combined in Situ Spectroscopic and ab Initio Density Functional Theory Study. ACS Catalysis 2019, 9, 7759–7768. L. Liu and A. Corma*. Metal Catalysts for Heterogeneous Catalysis: From Single Atoms to Nanoclusters and Nanoparticles. Chemical Reviews, 2018, 118, 4981-5079. L. Liu, D.N. Zakharov, R. Arenal, P. Concepcion, E.A. Stach and A. Corma*. Evolution and stabilization of subnanometric metal species in confined space by in situ TEM. Nature Communications, 2018, 9, 574. L. Liu, A. V. Puga, J. Cored, P. Concepción, V. Pérez-Dieste, H. García* and A. Corma*. Sunlight-assisted hydrogenation of CO2 into ethanol and C2+ hydrocarbons by sodium-promoted Co@C nanocomposites. Applied Catalysis B: Environmental, 2018, 235, 186-196. R. Millán, L. Liu, M. Boronat*, and A. Corma*. A new molecular pathway allows the chemoselective reduction of nitroaromatics on non-noble metal catalysts. Journal of Catalysis, 2018, 364, 19-30. I. Sorribes, L. Liu, A. Doménech-Carbó, A. Corma*. Nanolayered cobalt–molybdenum sulfides as highly chemo-and regioselective catalysts for the hydrogenation of quinoline derivatives. ACS Catalysis 8, 4545-4557. L. Liu, U. Díaz, R. Arenal, G. Agostini, P. Concepción and A. Corma*. Generation of subnanometric platinum with high stability during transformation of a 2D zeolite into 3D. Nature Materials, 2017, 16, 132-138. L. Liu, F. Gao, P. Concepcion and A. Corma*. A new strategy to transform mono and bimetallic non-noble metal nanoparticles into highly active and chemoselective hydrogenation catalysts. Journal of Catalysis, 2017, 350, 218-225. I. Sorribes, L. Liu, A. Corma*. Nanolayered Co–Mo–S catalysts for the chemoselective hydrogenation of nitroarenes. ACS Catalysis, 7, 2698-2708 L. Liu, P. Conception and A. Corma*. Non-noble metal catalysts for hydrogenation: A facile method for preparing Co nanoparticles covered with thin layered carbon. Journal of Catalysis, 2016, 340, 1-9. L. Liu, T. Matsushita, P. Concepción, A. Leyva-Pérez and A. Corma*. Facile synthesis of surface-clean monodispersed CuOx nanoparticles and their catalytic properties for oxidative coupling of alkynes. ACS Catalysis, 2016, 6, 2211-2221. W. Zou#, L. Liu#, L. Zhang, L. Li, Y. Cao, X. Wang, C. Tang, F. Gao*, L. Dong*. Crystal-plane effects on surface and catalytic properties of Cu2O nanocrystals for NO reduction by CO. Applied Catalysis A: General, 505, 334-343. L. Liu, C. Ge, W. Zou, X. Gu, F. Gao*, L. Dong*. Crystal-plane-dependent metal–support interaction in Au/TiO2. Physical Chemistry Chemical Physics, 17, 5133-5140. C. Ge#, L. Liu#, Z. Liu, X. Yao, Y. Cao, C. Tang, F. Gao, L. Dong. Improving the dispersion of CeO2 on γ-Al2O3 to enhance the catalytic performances of CuO/CeO2/γ-Al2O3 catalysts for NO removal by CO. Catalysis Communications, 2014, 51, 95-99. L Liu, X Gu, Z Ji, W Zou, C Tang, F Gao, L Dong. Anion-Assisted Synthesis of TiO2 Nanocrystals with Tunable Crystal Forms and Crystal Facets and Their Photocatalytic Redox Activities in Organic Reactions. Journal of Physical Chemistry C, 2013, 117, 18578-18587 L. Liu, Z. Ji, W. Zou, X. Gu, Y. Deng, F. Gao, C. Tang, L. Dong. In situ loading transition metal oxide clusters on TiO2 nanosheets as co-catalysts for exceptional high photoactivity ACS Catalysis, 2013, 3, 2052-2061. L. Liu, X. Gu, Y. Cao, X. Yao, L. Zhang, C. Tang, F. Gao, L. Dong. Crystal-Plane Effects on the Catalytic Properties of Au/TiO2. ACS Catalysis, 2012, 3, 2768–2775. L. Liu, X. Gu, C. Sun, H. Li, Y. Deng, F. Gao, L. Dong. In situ loading of ultra-small Cu2O particles on TiO2 nanosheets to enhance the visible-light photoactivity Nanoscale, 2012, 4, 6351-6359.

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