梅清清,湖北黃岡人,浙江大學環(huán)境與資源學院“百人計劃”研究員,博士生導師,牛頓國際學者。2017年博士畢業(yè)于中國科學院化學研究所,師從韓布興院士;2018年進入英國曼徹斯特大學從事博士后研究工作,并獲得英國皇家學會授予的牛頓國際獎學金(當年全球僅授予58人);2021年全職加入浙江大學環(huán)境與資源學院,擔任“百人計劃”研究員。長期從事生物質廢棄物定向催化轉化與資源化的前沿研究,開發(fā)了多條生物質轉化新路線,特別是在木質素的高選擇轉化研究中取得了重大突破,提出一種特定基團優(yōu)先轉化策略,實現(xiàn)了將木質素轉化為單一產(chǎn)物。在Sci. Adv., Angew. Chem. Int. Ed.等權威期刊上發(fā)表SCI論文30余篇。
課題組專注于有機固體廢棄物(生物質、廢塑料等)資源化,開發(fā)高效有機固廢定向轉化方法替代化石資源制備高附加值化學品,挖掘有機固廢作為功能材料在環(huán)境污染治理方面的應用潛力。實現(xiàn)變廢為寶、消除污染、物質循環(huán)、價值升華,為建立健全綠色低碳循環(huán)發(fā)展經(jīng)濟體系做貢獻,助力我國實現(xiàn)碳中和重要戰(zhàn)略目標。因科研工作需要,現(xiàn)面向國內外公開招聘博士后2-3名、科研助理2名、2022年博士1名(普博或直博均可)。熱忱歡迎化學(催化、有機)、材料、環(huán)境、生物等相關專業(yè)優(yōu)秀人才加盟,共創(chuàng)碳中和的美好明天!
1. Mei, Qingqing; Yang, Youdi; Liu, Hangyu; Li, Shaopeng; Liu, Huizhen; Han, Buxing. A New Route to Synthesize Aryl Acetates from Biomass-Derived Feedstock. Science Advances, 2018, 4 (5), eaaq0266.
2. Mei, Qingqing; Liu, Huizhen; Shen, Xiaojun; Meng, Qinglei; Liu, Hangyu; Han, Buxing. Selective Utilization of the Methoxy Group in Lignin to Produce Acetic Acid. Angewande Chemie International Edtion, 2017, 56, 14868-14872. (VIP, Front Cover)
3. Mei, Qingqing; Shen, Xiaojun; Liu, Huizhen; Liu, Hangyu; Xiang, Junfeng; Han, Buxing. Selective Utilization of Methoxy Group in Lignin for N-methylation Reaction of Anilines. Chemical Science, 2019, 10, 1082-1088.
4. Mei, Qingqing; Liu, Huizhen; Yang, Youdi; Liu, Hangyu; Li, Shaopeng; Zhang, Pei; Han, Buxing. Base-Free Aerobic Oxidation of Alcohols over Copper-Based Complex under ambient condition. ACS Sustainable Chemistry & Engneering, 2017, 6, 2362-2369.
5. Mei, Qingqing; Liu, Huizhen; Hou, Minqiang; Liu, Hangyu; Han, Buxing. Selective Hydration of Asymmetric Internal Aryl Alkynes without Directing Groups to α-Aryl Ketones over Cu-based catalyst. New Journal of Chemistry, 2017, 47, 6290-6295.
6. Mei, Qingqing#; Shen, Xiaojun#; Liu, Huizhen; Han, Buxing. Selectively transform lignin into value-added chemicals. Chinese Chemical Letters, 2019, 30, 15-24.
7. Mei, Qingqing; Hou, Minqiang; Ning, Hui; Ma, Jun; Yang, Dezhong; Han, Buxing. Microstructure and Intermolecular Interactions of [Bmim][PF6] + Water + Alcohol Systems: A Molecular Dynamics Simulation Study. Acta Physico-Chemica Sinica, 2014, 30 (12), 2210-2215.
8. Lian, Xueyu#; Sun, Zhongti#; Mei, Qingqing#; Yi, Yuyang; Zhou, Junhua; Rümmeli, Mark; Sun, Jingyu. Biomass Template Derived Boron/Oxygen Co‐Doped Carbon Particles as Advanced Anodes for Potassium‐Ion Batteries. Energy & Environmental Materials, 2021, doi: 10.1002/eem2.12183.
9. Hou, Minqiang*; Mei, Qingqing; Han, Buxing. Solvent effects on geometrical structures and electronic properties of metal Au, Ag, and Cu nanoparticles of different sizes. Journal of Colloid and Interface Science, 2015, 449, 488-493.
10. Lin, Longfei; Mei, Qingqing; Han, Xue; Parker, Stewart; Yang, Sihai. Topics in Catalysis, 2020, DOI: 10.1007/s11244-020-01389-7.
11. Shen, Xiaojun; Meng, Qinglei; Mei, Qingqing; Liu, Huizhen; Yan, Jiang; Song, Jinliang; Tan, Dongxing; Chen, Bingfeng; Zhang, Zhanrong; Yang, Guanying; Han, Buxing. Selective catalytic transformation of lignin with guaiacol as the only liquid product. Chemical Science, 2020, 11(5), 1347-1352
12. Shen, Xiaojun; Meng, Qinglei; Mei, Qingqing; Xiang, Junfeng; Liu, Huizhen; Han, Buxing. The Production of 4-Ethyltoluene Via Directional Valorization of Lignin. Green Chemistry, 2020, 22(7), 2191-2196.
13. Shen, Xiaojun; Wen, Jialong; Mei, Qingqing; Chen, Xue; Sun, Dan; Yuan, Tongqi; Sun, Runcang. Facile fractionation of lignocelluloses by biomassderived deep eutectic solvent (DES) pretreatment for cellulose enzymatic hydrolysis and lignin valorization. Green Chemistry, 2019, 21(2), 275-283.
14. Shen, Xiao-Jun; Chen, Tianying; Wang, Han-Min; Mei, Qingqing; Yue, Fengxia; Sun, Shaoni; Wen, Jia-Long; Yuan, Tong-Qi; Sun, Run-Cang. Structural and Morphological Transformations of Lignin Macromolecules During Bio-Based Deep Eutectic Solvent (Des) Pretreatment. ACS Sustainable Chemistry & Engineering, 2019, 8(5), 2130-2137.
15. Yang, Youdi; Li, Shaopeng; Xie, Chao; Liu, Hangyu; Wang, Yanyan; Mei, Qingqing; Liu, Huizhen; Han, Buxing. Ethylenediamine Promoted the Hydrogenative Coupling of Nitroarenes over Ni/C Catalyst. Chinese Chemical Letters, 2019, 30(1), 203-206.
16. Yang, Youdi, Liu, Hangyu; Li, Shaopeng; Chen, Chunjun; Wu, Tianbin; Mei, Qingqing; Wang, Yanyan et al. Hydrogenolysis of 5-Hydroxymethylfurfural to 2, 5-Dimethylfuran under Mild Conditions without Any Additive. ACS Sustainable Chemistry & Engineering, 2019, 7(6), 5711-5716.
17. Liu, Mingyang; Zhang, Zhanrong; Liu, Huizhen; Xie, Zhenbing; Mei, Qingqing; Han, Buxing. Transformation of alcohols to esters promoted by hydrogen bonds using oxygen as the oxidant under metal-free conditions. Science advances, 2018, 4 (10), eaas9319.
18. Liu, Hangyu; Mei, Qingqing; Li, Shaopeng; Yang, Youdi; Wang Yanyan; Liu, Huizhen; Zheng, Lirong; An, Pengfei; Zhang, Jing; Han, Buxing. Selective hydrogenation of unsaturated aldehydes over Pt nanoparticles promoted by the cooperation of steric and electronic effects. Chemical Communications, 2018, 54(8), 908-911.
19. Liu, Hangyu; Mei, Qingqing; Xu, Qinglin; Song, Jinliang; Liu, Huizhen; Han, Buxing. Synthesis of formamides containing unsaturated groups by N-formylation of amines using CO2 with H2. Green Chemistry, 2017, 19 (1), 196-201.
20. Ma, Jun, Lu, Lu; Mei, Qingqing; Zhu, Qinggong; Hu, Jiayin; Han, Buxing. Zni2/Net3‐Catalyzed Cycloaddition of Co2 with Propargylic Alcohols: Computational Study on Mechanism. ChemCatChem, 2017, 9 (21), 4090-4097.
21. Chen, Bingfeng; Li, Fengbo; Mei, Qingqing; Yang, youdi; Liu, Huizhen; Yuan, Guoqing; Han, Buxing. Synthesis of nitrogen and sulfur co-doped hierarchical porous carbons and metal-free oxidative coupling of silanes with alcohols. Chemical Communications, 2017, 53 (97), 13019-13022.
22. He, Zhenhong; Liu, Hangyu; Liu, Huizhen; Qian, Qingli; Meng, Qinglei; Mei, Qingqing; Han, Buxing. Heterogeneous Cobalt-Catalyzed Direct N-Formylation of Isoquinolines with CO2 and H2. ChemCatChem, 2017, 9 (11), 1947-1952.
23. Liu, Hangyu; Mei, Qingqing; Wang, Yanyan; Liu, Huizhen; Han, Buxing. N-vinyl pyrrolidone promoted aqueous-phase dehydrogenation of formic acid over PVP-stabilized Ru nanoclusters. Science China Chemistry, 2016, 59 (10), 1342-1347.
24. Zhang, Suqi; Mei, Qingqing; Liu, Hangyu; Liu, Huizhen; Zhang, Zepeng; Han, Buxing. Copper-catalyzed N-formylation of amines with CO2 under ambient conditions. RSC Advances, 2016, 6 (38), 32370-32373.
25. Gao, Xiang; Yu, Bo; Mei, Qingqing; Yang, Zhenzhen; Zhao, Yanfei; Zhang, Hongye; Hao, Leiduan; Liu, Zhimin. Atmospheric CO2 promoted synthesis of N-containing heterocycles over B(C6F5)(3) catalyst. New Journal of Chemistry, 2016, 40 (10), 8282-8287.
26. Hu, Jiayin; Ma, Jun; Zhu, Qinggong; Qian, Qingli; Han, Hongling; Mei, Qingqing; Han, Buxing. Zinc(II)-catalyzed reactions of carbon dioxide and propargylic alcohols to carbonates at room temperature. Green Chemistry, 2016, 18 (2), 382-385.
27. Liu, Chengcheng; Mei, Qingqing; Zhang, Jianling; Kang, Xinchen; Peng, Li; Han, Buxing; Xue, Zhimin; Sang, Xinxin; Yang, Xiaogan; Wu, Zhonghua; Li, Zhihong; Mo, Guang. CO2 as a smart gelator for Pluronic aqueous solutions. Chemical Communications, 2014, 50 (91), 14233-14236.
28. Hou, Minqiang; Zhang, Jianling; Han, Buxing; Mei, Qingqing; Ning, Hui; Yang, Dezhong. The molecular clusters in a supercritical fluid-solid system should be considered as a phase-thermodynamic principle and evidence. Physical Chemistry Chemical Physics, 2013, 15 (26), 10654-10658.
29. Ning, Hui; Hou, Minqiang, Mei, Qingqing, Yang, Dezhong, Han, Buxing. Phase Behaviors of 1-Butyl-3-methylimidazolium Hexafluorophosphate + Water + Alcohol Systems. Acta Physico-Chemica Sinica, 2013, 29 (04), 678-682.
30. Ning, Hui; Hou, Minqiang; Mei, Qingqing; Liu, Yuanhui; Yang, Dezhong; Han, Buxing. The physicochemical properties of some imidazolium-based ionic liquids and their binary mixtures. Science China Chemistry, 2012, 55 (8), 1509-1518.
31. Liu, Yu; Wang, Yafei; He, Juan; Mei, Qingqing; Chen, Kai; Cui, Jiaojiao; Li, Chun et al. High-Efficiency Red Electroluminescence from Europium Complex Containing a Neutral Dipyrido (3, 2-A: 2’, 3’-C) Phenazine Ligand in Pleds. Organic Electronics, 2012, 13(6), 1038-1043.
一、研究方向
1.有機固體廢棄物定向轉化與高值利用
2.基于有機固體廢棄物的環(huán)境功能材料
二、應聘條件
(一)博士
請自行查閱最新招生簡章。直博申請著請在大三暑期關注學院夏令營,積極報名參加。普博要求英語460分以上,或雅思5.5或托福80以上,且至少發(fā)表一篇第一作者高質量SCI論文,碩士畢業(yè)不超過三年。
(二)科研助理
碩士以上學歷,至少發(fā)表SCI論文1篇
(三)博士后
1. 年齡35歲以下,身心健康,相關專業(yè)博士即將畢業(yè)或畢業(yè)不超過三年;
2.博士就讀以來發(fā)表過1篇以上高水平學術論文(第一作者),有較強科研能力;
3.具有較強執(zhí)行力和創(chuàng)新思維,能夠在導師指導下獨立開展研究工作;
4.良好的團隊合作意識和溝通能力,較強中英文表達、閱讀、寫作能力;
5.其它專業(yè)背景的優(yōu)秀博士對課題組研究感興趣的亦可聯(lián)系PI討論結合點。
三、工作待遇
1.工資及福利待遇按浙江大學博士后相關規(guī)定執(zhí)行,20-30萬元人民幣,一人一議,課題組依據(jù)工作績效另提供科研獎勵;
2.博士后進站工作2年及以上,可申報浙江大學高級專業(yè)技術職務資格;
3.科研工作優(yōu)秀、業(yè)績突出者,期滿可申報浙江大學特聘(副)研究員等教師崗位;
4.可申請租住教師公寓(優(yōu)惠價格租賃)或按照規(guī)定申請社會化租房補貼;
5.提供良好的科研條件、指導協(xié)助發(fā)表高水平論文、支持申請各類基金項目;
6.支持參加國內外相關會議,并可推薦至劍橋大學、曼徹斯特大學、麥吉爾大學、中科院等單位工作。
四、應聘方式
有意向者請將個人簡歷(PDF文件,包含完整的學習和工作經(jīng)歷、學術論文列表、代表性論文全文)發(fā)送至meiqq@zju.edu.cn,主題注明“博后應聘--本人姓名”。收到材料初審后,我們會盡快與申請人聯(lián)系安排面試。
浙江大學是一所歷史悠久、聲譽卓著的高等學府,坐落于中國歷史文化名城、風景旅游勝地杭州。浙江大學的前身求是書院創(chuàng)立于1897年,為中國人自己最早創(chuàng)辦的新式高等學校之一。1928年,定名國立浙江大學。抗戰(zhàn)期間,浙大舉校西遷,在貴州遵義、湄潭等地辦學七年,1946年秋回遷杭州。1952年全國高等學校院系調整時,浙江大學部分系科轉入兄弟高校和中國科學院,留在杭州的主體部分被分為多所單科性院校,后分別發(fā)展為原浙江大學、杭州大學、浙江農(nóng)業(yè)大學和浙江醫(yī)科大學。1998年,同根同源的四校實現(xiàn)合并,組建了新浙江大學,邁上了創(chuàng)建世界一流大學的新征程。習近平總書記主政浙江期間,親自聯(lián)系浙江大學,18次蒞臨指導,對學校改革發(fā)展作出了一系列重要指示,描繪了高水平建成中國特色世界一流大學的宏偉藍圖。在120多年的辦學歷程中,浙江大學始終秉承以“求是創(chuàng)新”為校訓的優(yōu)良傳統(tǒng),以天下為己任、以真理為依歸,逐步形成了“勤學、修德、明辨、篤實”的浙大人共同價值觀和“海納江河、啟真厚德、開物前民、樹我邦國”的浙大精神。
浙江大學是一所特色鮮明、在海內外有較大影響的綜合型、研究型、創(chuàng)新型大學,學科涵蓋哲學、經(jīng)濟學、法學、教育學、文學、歷史學、藝術學、理學、工學、農(nóng)學、醫(yī)學、管理學、交叉學科等13個門類,設有7個學部、37個專業(yè)學院(系)、1個工程師學院、2個中外合作辦學機構、7家直屬附屬醫(yī)院。學,F(xiàn)有紫金港、玉泉、西溪、華家池、之江、舟山、海寧等7個校區(qū),占地面積6223440平方米,圖書館總藏書量787萬冊。截至2020年底,學校有全日制學生60739人、國際學生5596人、教職工9674人,教師中有中國科學院院士、中國工程院院士(含雙聘)52人、文科資深教授15人、教育部“長江學者獎勵計劃”特聘教授101人、國家杰出青年科學基金獲得者154人。在國家公布的“雙一流”建設名單中,學校入選一流大學建設高校(A類),18個學科入選一流建設學科,居全國高校第三。
浙江大學緊緊圍繞“德才兼?zhèn)、全面發(fā)展”的核心要求,全面落實立德樹人根本任務,著力培養(yǎng)德智體美勞全面發(fā)展、具有全球競爭力的高素質創(chuàng)新人才和領導者。在長期的辦學歷程中,學校涌現(xiàn)出大批著名科學家、文化大師以及各行各業(yè)的精英翹楚,包括1位諾貝爾獎獲得者、5位國家最高科技獎得主、4位“兩彈一星”功勛獎章獲得者、1位“八一勛章”獲得者、1位全軍掛像英模、5位國家榮譽稱號獲得者、6位“最美奮斗者”和210余位兩院院士等杰出典型,為實現(xiàn)中華民族偉大復興、推進人類文明交流互鑒作出了積極貢獻。
浙江大學注重精研學術和科技創(chuàng)新,建設了一批開放性、國際化的高端學術平臺,匯聚了各學科的學者大師和高水平研究團隊。“十二五”以來,學校多項科研創(chuàng)新指標保持全國高校前列,作為牽頭單位獲得國家科技進步特等獎1項、一等獎8項、二等獎56項;《中國歷代繪畫大系》、《中華禮藏》、敦煌學等文化傳承創(chuàng)新成果在海內外產(chǎn)生了廣泛影響。
“國有成均,在浙之濱”。今天的浙江大學,堅持以習近平新時代中國特色社會主義思想為指導,致力于傳播與創(chuàng)造知識,弘揚與引領文化,服務與奉獻社會,堅持“更高質量、更加卓越、更受尊敬、更有夢想”的戰(zhàn)略導向,統(tǒng)籌推進“五大體系”“五大布局”“五大戰(zhàn)略”,加快走向世界一流大學前列,為實現(xiàn)中華民族偉大復興、促進人類文明進步作出卓越貢獻。
近期發(fā)表