简介: |
报告人简介
王博,1982年生于陕西。北京理工大学教授,博士生导师,现任前沿交叉科学研究院常务副院长。国家杰出青年基金获得者,中组部第二批“千人计划(青年)”,获2015年度“中国化学会青年化学奖”,2017年入选科技部中青年科技创新领军人才。中国交通部环境与可持续发展学会理事。
2004年于北京大学化学与分子工程学院获理学学士学位,2006年于美国密歇根大学获化学材料学硕士学位,2008年于美国加州大学洛杉矶分校获化学材料学博士学位。
王博教授立足新型金属有机框架、配位聚合物薄膜材料,面向重大国家需求,在空气净化与雾霾治理、危险化合物检测和安全防护等领域取得了具有鲜明特色的科研成果。主持开发的基于新型金属有机骨架薄膜材料的颗粒物捕捉,VOC吸附与高效光降解技术有望对国防化学防护与雾霾治理和空气净化行业产生一定的经济价值和社会效益。
现主持国家自然科学基金委课题三项、主持解放军总装备部探索重大研究计划一项,承担973课题一项。王博曾在Nature和Science发表文章。在工业界工作期间,曾参与MOF材料的工业化量产研究,实现了MOF粉体吨级以上中试,并参与MOF材料造粒成型与重卡汽车车载甲烷储存等工业化应用研究。
2011底全职回国独立工作以来,已作为通讯作者在JACS(7篇)、Angew. Chem. Int. Ed.(2篇)、Adv. Mater.(4篇)、 Chem. Soc. Rev. (2篇)、Chem. Sci.(2篇)等国际学术期刊上发表50余篇论文,其中SCI影响因子10以上20篇,4.0以上40余篇。全部已发表论文SCI他引超过5000次,单篇最高他引1300次。已经获批美国专利3项,获批中国发明专利2项。研究成果受到国内外学者的认可和关注,被国际专业期刊多次评述报道。
代表性成果:
[1] B. Wang, A. P. Côté, H. Furukawa, M. O’Keeffe and O. M. Yaghi* Colossal Cages in Zeolitic Imidazolate Frameworks as Selective Carbon Dioxide Reservoirs, Nature, 2008, 453, 207−211.
[2] Y. Chen, F. Chen, S. Zhang, Y. Cai, S. Cao, S. Li, W. Zhao, Sh. Yuan, X. Feng, A. Cao, X. Ma* and B. Wang* Facile Fabrication of Multifunctional Metal-Organic Framework Hollow Tubes to Trap Pollutants, J. Am. Chem. Soc., 2017, 139, 16482−16485.
[3] Y. Chen, S. Zhang, S. Cao, S. Li, F. Chen, S. Yuan, J. Zhou, X. Feng, X. Ma and B. Wang* Roll-to-Roll Production of Metal-Organic Framework Coatings for Particulate Matter Removal, Adv. Mater., 2017, 29, 1606221.
[4] S. Wang, Q. Wang, P. Shao, Y. Han, X. Gao, L. Ma, S. Yuan, X. Ma, J. Zhou, X. Feng* and B. Wang* Exfoliation of Covalent Organic Frameworks into Few-Layer Redox-Active Nanosheets as Cathode Materials for Lithium-Ion Batteries, J. Am. Chem. Soc., 2017, 139, 4258−4261.
[5] T. Kitao, Y. Zhang, S. Kitagawa, B. Wang* and T. Uemura* Hybridization of MOFs and Polymers, Chem. Soc. Rev., 2017,46, 3108-3133.
[6] J. Zhou, B. Wang* Emerging Crystalline Porous Materials as a Multifunctional Platform for Electrochemical Energy Storage, Chem. Soc. Rev., 2017, 46, 6927−6945.
[7] S. Wang, Q. Wang, X. Feng,* B. Wang* and L. Yang, Explosives in the Cage: Metal-Organic Framework for Energetic Materials Sensing and Desensitization, Adv. Mater., 2017, 29, 1701898.
[8] Y. Chen, X. Huang, S. Zhang, S. Li, S. Cao, X. Pei, J. Zhou, X. Feng and B. Wang* Shaping of Metal-Organic Frameworks: from Fluid to Shaped Bodies and Robust Foams, J. Am. Chem. Soc., 2016, 138, 10810−10813.
[9] N. Ding, H. Li, X. Feng,* Q. Wang, S. Wang, L. Ma, J. Zhou and B. Wang* Partitioning MOF−5 into Confined and Hydrophobic Compartments for Carbon Capture under Humid Conditions, J. Am. Chem. Soc., 2016, 138, 10100−10103.
[10] Y. Chen, S. Li, X. Pei, J. Zhou, X. Feng, S. Zhang, Y. Cheng, H. Li, R. Han and B. Wang* A Solvent-Free Hot-Pressing Method for Preparing Metal-Organic Framework Coatings, Angew. Chem. Int. Ed., 2016, 55, 3419−3423.
[11] Y. Zhang, S.Yuan, X. Feng, H. Li, J. Zhou and B. Wang* Preparation of Nanofibrous Metal-Organic Framework Filters for Efficient Air Pollution Control, J. Am. Chem. Soc., 2016, 138, 5785−5788.
[12] Q. Wang, X. Feng, S. Wang, N. Song, Y. Chen, W. Tong, Y. Han, L. Yang* and B. Wang* Metal-Organic Framework Templated Synthesis of Copper Azide as the Primary Explosive with Low Electrostatic Sensitivity and Excellent Initiation Ability, Adv. Mater., 2016, 28, 5837−5843.
[13] Y. Zhang, X. Feng,* H. Li, Y. Chen, J. Zhao, S. Wang, L. Wang and B. Wang* Photoinduced Postsynthetic Polymerization of a Metal–Organic Framework toward a Flexible Stand-Alone Membrane, Angew. Chem. Int. Ed. 2015, 54, 4259−4263.
[14] L. Wang, X. Feng, L. Ren, Q. Piao, J. Zhong, Y. Wang and B. Wang* Flexible Solid-State Supercapacitor Based on a Metal−Organic Framework Interwoven by Electrochemically-Deposited PANI, J. Am. Chem. Soc., 2015, 137, 4920−4923.
[15] Y. Guo, X. Feng,* T. Han, S. Wang, Z. Lin, Y. Dong and B. Wang* Tuning the Luminescence of Metal-Organic Frameworks for Detection of Energetic Heterocyclic Compounds, J. Am. Chem. Soc., 2014, 136, 15485−15488.
[16] L. Tan, H. Li, Y. Qiu, D. Chen, X. Wang, R. Pan, Y. Wang, S. Zhang, B. Wang* and Y. Yang* Stimuli-Responsive Metal-Organic Frameworks Gated by Pillar[5]arene Supramolecular Switches, Chem. Sci., 2015, 6, 1640−1644.
[17] Y. Guo, S. Gu, X. Feng,* J. Wang, H. Li, T. Han, Y. Dong, T. D. James, X. Jiang and B. Wang* 3D Cross-Correlative Matrix Temperature Detection and Non-Invasive Thermal Mapping based on a Molecular Probe, Chem. Sci., 2014, 5, 4388–4393.
[18] L. Tan, H. Li, Y. Tao, S. Zhang,* B. Wang* and Y. Yang* Pillar[5]arene-Based Supramolecular Organic Frameworks for Highly Selective CO2-Capture at Ambient Conditions, Adv. Mater. 2014, 26, 7027−7031.
[19] J. Zhou, R. Li, X. Fan, Y. Chen, R. Han, W. Li, J. Zheng, B. Wang* and X. Li* Rational Design of a Metal-Organic Framework Host for Sulfur Storage in Fast, Long-Cycle Li-S Batteries, Energ. Environ. Sci., 2014, 7, 2715−2724.
[20] L. Wang, Y. Han, X. Feng, J. Zhou, P. Qi and B. Wang*
Metal−organic Frameworks for Energy Storage: Batteries and Supercapacitors, Coord. Chem. Rev., 2016, 307, 361−381. |