1.具有独立开展研究工作的能力、强烈的事业心和责任心、开阔的学术视野和团队合作精神,学术作风端正、严谨;
2.申请人须为获得博士学位的全日制博士,不限于应届毕业生。应届博士毕业生须已满足博士学位论文答辩的基本要求;
3.近年来,在本专业领域产出高质量代表性成果,具有成为优秀学者的潜质。
1.博士后薪酬实行基本年薪制,薪酬总额由学校配资、导师(学院)配资、租房补贴和五险一金构成,入选国家博士后人才支持计划者,其国家资助经费在校发薪酬之外单独发放,科研博士后导师配资额不得低于学校要求。
2.博士后进站后户口可迁至北京,落在我校常住集体户口,其配偶和子女户口不可迁入。在站期间生育子女的女性博士后,可以办理子女落户。
3.女性博士后在产假期间的薪酬和医疗待遇依据国家有关规定执行,生育津贴与产假期间的薪酬按照孰高原则发放。
4.在站卓越师资博士后,其子女可享受学校正式职工子女入学入托待遇,在站卓越百人博士后和科研博士后视情况给与一定比例的子女入学入托指标。博士后出站离校后其子女不再享受我校正式教职工子女入学入托待遇。
5.博士后在站期间经合作导师和设站学院/研究院同意,可申请中国博士后科学基金、国家自然科学基金和国家社会科学基金。
6.在站一年及以上的全职博士后(流动站自主招收非在职博士后),可以参加“北京航空航天大学优秀博士后”的评选。
7.卓越百人博士后支持期2年,年薪税前不低于28万/年。在站期间入选“博士后创新人才支持计划”等项目的,国家资助学校不统筹。
刘宇宙教授目前主要从事含多环有机硅物质的设计和多苯环体系的组装方面的研究,计划通过这方面的研究制备出革命性的具有高性能的新颖材料。刘宇宙教授国内就读于清华大学化学系(本科/硕士),博士毕业于美国纽约大学化学系,研究氢键体系的组装行为,之后被美国Milliken公司聘为研发总部的独立化学家,进行高性能LED封装材料的开发。刘宇宙教授在材料的设计和研发方面有着丰富的学术界和工业界的经验,不仅在Science, Nature Commun., JACS, Angew, Drug. Resis. Update, Adv. Sci.等高档次期刊上发表过原创文章,也研发出屡获奖项的工业产品。刘宇宙教授创办的企业获得了国家高新企业认证、AI金雁奖、全球数字经济大会北京市人工智能示范案例,BEYOND可持续发展创新大奖等奖项。刘宇宙教授于2014年入职于北京航空航天大学化学学院,目前对外招生博士后、博士和硕士研究生,各种背景均可,可为化学、材料、环境和计算等。
【导师发表过的文章】:
1.Nano Si-doped Ruthenium Oxide Particles from Caged Precursors for High-Performance Acidic Oxygen Evolution C. X. Liu, Y. B. Jiang, T. Wang*, Q. S. Li, Y. Z. Liu* Adv. Sci. 2023, 2207429 (SCI一区)
2.Cage-modified hypocrellin against multidrug-resistant Candida spp. With unprecedented activity in light-triggered combinational photodynamic therapy X. Y. Liu, R. J. Fang, R. Feng, Q. S. Li, M. Q. Su, C. L. Hou, K. W. Zhuang, Y. L. Dai, N. Lei, Y. B. Jiang, Y. Z. Liu*, Y. P. Ran* Drug Resis. Update 2022, 65, 100887 (SCI 一区)
3.Rhodium Nano Particles Within an Organic Cage with Better Durability and Gated Activity for Hydrogen Generation Reaction Q. S. Li, D. F. Gu, C. Q. Cui, G. H. Pan, D. D. Yu, Y. Z. Liu* Int. J. Hydrogen Energ. 2022, 47, 15960-15968 (SCI 二区)
4.Selective Photocatalyst for Styrene Epoxidation with Atmospheric O2 by Covalent Organic Frameworks Catalysis D. F. Gu, N. J. Liang, Q. S. Li, G. W. Li, * D. D. Yu, Y. Z. Liu* Catal. Sci. Technol. 2022, 12, 2717-2723 (SCI 二区)
5.Caged Iridium Catalyst for Hydrosilylation of Alkynes with High Site Selectivity Q. S. Li, D. F. Gu, D. D. Yu, Y. Z. Liu* ChemCatChem 2022, 14, e202101727 (SCI 二区)
6.Tying Covalent Organic Frameworks throughAlkene Metathesis and Supported Platinum as Efficient Catalysts for Hydrosilylation D. F. Gu, G. W. Li, Y. S. Liu, Y. Z. Liu* Nanomaterials 2022, 12, 499-514 (SCI一区)
7.Ir Single Atom Catalyst Loaded on Amorphous Carbon Materials with High HER Activity C. X. Liu, G. H. Pan, N. J. Liang, S. Hong, J. Y. Ma, Y. Z. Liu* Adv. Sci. 2022, 9, 2105392 (SCI一区)
8.Carbon Material With Ordered Sub-Nanometer Hole Defects N. J. Liang, Q. S. Li, G. H. Pan, C. H. Liu, Y. Z. Liu* Front. Chem. 2022, 10, 1-10 (SCI二区)
9. Mild Synthesis of a Dimethoxy-Terminated Siloxane through a Ring-Opening Reaction N. J. Liang, Q. S. Li, M. Y. Ge, D. F. Gu, Y. Z. Liu* ChemistrySelect 2022, 7, 1-5 (SCI三区)
10.Cobalt‐Catalyzed Highly Regioselective Three‐Component Arylcarboxylation of Acrylate with Aryl Bromides and Carbon Dioxide W. Hang, N. J. Liang, Y. Z. Liu, C. J. Xi ChemSusChem 2021, 14, 4941-4946 (SCI一区)
11.Biomimetic Caged Platinum Catalyst for Hydrosilylation Reaction with High Site Selectivity G. H. Pan, et al. Y. Z. Liu Nat. Commun. 2021, 12, 1-9 (SCI一区)
12.Reaction for the Preparation of Unique Cyclic Polysiloxanes with Large Size and Narrow Distribution M. Y. Ge, G. W. Li, Z. B. Ni, N. Liu, Y. S. Liu, Y. Z. Liu J. Polym. Sci. 2020, 58, 3009-3017 (SCI 二区)
13.Highly Catalytically Active High-spin Single-Atom Iron Catalyst Supported by Catechol-Containing Microporous 2D Polymer G. W. Li, D. F. Gu, R. Cao, S. Hong, Y. S. Liu, Y. Z. Liu* Chem. Lett. 2020, 49, 1240-1244 (SCI 四区)
14.Plasmonic Acceleration of Nitrophenol Reduction upon Catalysis by Robust Gold Nanoparticle Donut Assemblies H. J. Liu, J. Y. Yu, Y. S. Liu, Y. Z. Liu* Catal. Commun. 2020, 146, 106137 (SCI 二区)
15.Porous Films from Cyclic Block Copolymers H. J. Liu, H. P. Li, Y. Jiang*, Y. Z. Liu* Polymer J. 2020, 52, 449-455 (SCI 二区)
16.Cyclosiloxane-containing Polymers and the Formation of Highly Stable Elastomer G. W. Li, Y. Z. Liu* Chem. Lett. 2020, 49, 299-302 (SCI 四区)
17.Donut Assembly of Nanoparticles with High Catalytic Efficiency for Hydrogen Gas Generation from Ammonia Borane J. Y. Yu, G. W. Li, H. J. Liu, Z. Z. Li, Y. Z. Liu* ChemCatChem 2019, 11, 5536-5542 (SCI 二区)
18.Hyperbranched Polysiloxanes Based on Polyhedral Oligomeric Silsesquioxane Cages with Ultra-High MolecularWeight and Structural Tuneability N. Liu, J. Y. Yu, Y. Y. Meng*, Y. Z. Liu* Polymers 2018, 10, 496-509 (SCI 一区)
19.Synthesis of Spirocyclosiloxanes for Transparent Copolymer Thermosets J. Y. Yu, Y. Han, Y. Z. Liu* J. Appl. Polym. Sci. 2018, 135, 46370-46375 (SCI 二区)
20.High Molecular Weight Cyclic Polysiloxanes from Organocatalytic Zwitterionic Polymerization of Constrained Spirocyclosiloxanes C. Y. Wu; J. Y. Yu; Q. S. Li; Y. Z. Liu* Polym. Chem. 2017, 8, 7301-7306 (SCI 一区)
21.Hyperbranched polysiloxane with Highly Constrained Rings and the Effect of the Attached Arms on the Assembly Behavior C. Y. Wu; C. H. Hu; Y. Z. Liu* Polym. Chem. 2017, 8, 6490-6495 (SCI 一区)
22.Cyclic Polysiloxanes with Linked Cyclotetrasiloxane Subunits J. Y. Yu; Y. Z. Liu* Angew. Chem. Int. Ed. 2017, 56, 8706-8710 (SCI 一区)
23.Regulating the Architectures of Hydrogen-Bonded Frameworks through Topological Enforcement Y. Z. Liu; W. C. Xiao; J. J. Yi; C. H. Hu; S. J. Park; M. D. Ward* J. Am. Chem. Soc. 2015, 137, 3386-3392
24.Supramolecular Archimedean Cages Assembled with 72 Hydrogen Bonds Y. Z. Liu; C. H. Hu; A. Comotti; M. D. Ward* Science 2011, 333, 436-440
25.Molecular Capsules in Modular Frameworks Y. Z. Liu; M. D. Ward* Cryst. Growth Des., 2009, 9, 3859-3861. Highlighted as Cover Paper
26.Mo(CO)6 Catalyzed Cyclotrimerization of Alkynes: Formation of Benzene Derivatives Y. Z. Liu; L. S. Zhou, C. J. Xi* Acta Chim. Sinica 2006, 266-268
27.Intramolecular “CH···π(Metal Chelate Ring) Interactions” as Structural Evidence for Metalloaromaticity in Bis(pyridine-2,6-diimine)Ru(II) Complexes Y. F. Jiang, C. J. Xi,* Y. Z. Liu, J. Niclós-Gutiérrez, D. Choquesillo-Lazarte Eur. J. Inorg. Chem. 2005, 1585-1588
28.Synthesis of Molybdenum Complex with Novel P(OH)3 Ligand Based on the One-pot reaction of Mo(CO)6 with HP(O)(OEt)2 and Water C. J. Xi*, Y. Z. Liu, C. B. Lai, L. S. Zhou Inorg. Chem. Commun. 2004, 7, 1202-1204
【导师主页】:https://shi.buaa.edu.cn/liuyuzhou/zh_CN/index.htm
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