導讀
近日,各高校院所相繼開始發布2026年暑期學校、優秀大學生暑期夏令營活動通知,化學加特別整理化學相關暑期學校、夏令營,供大家參考,感興趣的同學們快快申請。點擊查看:
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2026年化學理論與機制復旦國際暑期學校報名開啟
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聚焦分子理論,探索機制奧秘
CHEMISTRY
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摘要
由復旦大學化學系主辦的“化學理論與機制復旦國際暑期學校”(2026年7月6日至7月22日)報名開啟!期待與你一同深度探索化學理論與反應機制的學術魅力!
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化學國際暑期學校
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為加強國際學術交流與對話,構建高質量的基礎學科拔尖人才培養體系,為優秀的研究生、高年級本科生和博士后提供一流的學術成長平臺,復旦大學化學系每年推出不同主題的國際暑期學校。2026年的暑期學校將以“化學理論與機制”為主題,于7月6日至7月22日開設,通過前沿課程等豐富多彩的學術活動,共同探索、體驗化學理論與機制的核心科學價值。
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CHMISTRY
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國際暑期學校簡介
CHEMISTRY
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化學理論與機制是現代化學的核心基礎領域,是闡釋分子結構、化學鍵本質與化學反應微觀過程的重要理論支撐,為物理化學、無機化學、催化化學等前沿方向的發展提供核心指導,同時推動功能材料、能源化學等領域的技術革新。今年,復旦大學化學系的暑期學校以“化學理論與機制”為主題,圍繞理論化學前沿研究設置三大核心教學模塊,覆蓋團簇結構與理論催化、化學鍵與反應動力學、光譜技術及理論應用三大熱門研究方向,精準對接當前國際理論化學領域的研究熱點與發展趨勢。
國際暑期學校將在2026年7月6日-7月22日于復旦大學校內開辦,由復旦大學化學系主辦,邀請了十余位來自國內外知名大學并享有國際學術聲譽的專家學者,全英文集中講授理論化學、化學鍵以及光譜學相關領域的前沿和熱點,結合課堂講座與研討交流,傳授化學理論與機制領域的基礎知識并介紹最前沿的研究進展,為優秀的研究生、高年級本科生和博士后提供一流的學術成長平臺。暑期學校以基礎講座、前沿研討會等方式開展。
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課程簡介及時間安排
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團簇結構與理論催化
Cluster Structure and
TheoreticalCatalysis
團簇科學是物理化學與材料化學的前沿交叉領域,是精準構建功能分子、設計高效催化體系的重要基礎。本模塊將系統講解團簇化學的基礎理論、團簇結構調控規律與電子結構特征,結合前沿科研成果介紹金屬團簇、硼團簇、芳香團簇等典型團簇體系的構建與表征方法,重點講解團簇催化的反應機理、理論模擬策略與應用場景,涵蓋團簇材料設計、催化反應路徑分析、理論催化模擬技術等前沿研究內容。
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化學鍵與反應動力學
Chemical Bond and
ReactionDynamics
化學鍵理論是現代化學的核心理論根基,反應動力學是闡釋化學反應微觀機制的關鍵研究方向。本模塊聚焦主族化合物、過渡金屬配合物的成鍵本質,講解經典化學鍵理論與非經典成鍵模式、給體-受體鍵合等前沿理論,同時系統介紹小分子活化反應機理、金屬-金屬成鍵規律、無機體系電子結構特征,結合理論計算方法解析化學反應動力學過程與反應活性調控機制。
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光譜技術:應用與理論研究
Spectroscopic Technology:
Applications andTheoretical
Research
光譜技術是化學微觀表征與機理研究的核心實驗手段,是連接化學理論與實驗研究的重要橋梁。本模塊將講解各類高端光譜檢測技術的基本原理、設備應用與實驗方法,重點介紹速度映射成像技術、弱束縛團簇光譜檢測、大氣痕量氣體光譜傳感、氣溶膠光反應表征等前沿技術,結合理論模擬方法講解光譜數據解析、分子間相互作用表征、激光外腔器件設計等研究內容,兼顧技術應用與理論機理研究。
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課程安排
SCHEDULE
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注:
1. 7月6日上午9時報到注冊,7月22日下午5時結業離校
2. 課表安排會根據專家最新行程微調
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報名方式
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申請人條件
APPLICANT REQUIREMENTS
全球范圍內,對化學理論與機制有興趣,且具備相關學科和領域基礎知識的在讀本科生、研究生及博士后。
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費用說明
COST EXPLANATION
暑期學校免收學費,提供課程期間的中午餐食補貼。住宿費和交通費用自理。
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獎學金
SCHOLARSHIP
暑期學校項目將依據暑期學校期間表現,在結業時遴選約30位外校優秀學員,提供2000元獎學金,用于補助國際國內旅費和住宿費。
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申請流程
APPLICATION PROCEDURE
(a)非復旦大學的中國學生:登陸http://register.fudan.edu.cn/,搜索“2026年復旦大學旗艦型研究生國際暑期學校項目:化學理論與機制”,線上填寫報名信息并上傳英文或中文的個人簡歷,推薦使用Chrome瀏覽器。留學生的報名鏈接在https://istudent.fudan.edu.cn。
(b)復旦大學本校本科生:請登錄暑期學期選課系統,選修《化學理論與機制》(Chemical Theory and Mechanism)課程,可獲得對應的3學分(對于化學系學生,認定為進階II修讀學分)。
(c)復旦大學本校研究生:登陸http://register.fudan.edu.cn/,搜索“2026年復旦大學旗艦型研究生國際暑期學校項目:化學理論與機制”,線上填寫報名信息并上傳英文或中文的個人簡歷,推薦使用Chrome瀏覽器。修讀本國際課程的化學系研究生將獲得對應的3學分(專業選修課)。
第一輪截止時間:
留學生:北京時間2026年5月31日23:59(為簽證申請預留時間)。
其他同學:北京時間2026年6月15日22時整。
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聯系方式
CONTACT
聯系人:許老師
聯系電話:021-31242798
電子郵箱:luoyanx@fudan.edu.cn
2026年化學理論與機制復旦國際暑期學校網站:fiss-chemistry.fudan.edu.cn
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授課教師簡介
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Peijun Hu
ShanghaiTech University
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胡培君教授是世界知名催化領域專家。他于1982年畢業于華東理工大學,1993年獲英國劍橋大學博士學位,2004年起擔任英國貝爾法斯特女王大學教授。2009年,他當選為愛爾蘭皇家科學院院士,2023年加入上海科技大學物質科學與技術學院。他的主要研究方向包括物理化學、理論與計算催化,以及人工智能在催化和材料科學中的應用。長期以來,他致力于催化反應模擬與催化劑理論研究,在多相催化反應量子力學計算的實現與推進方面作出了重大貢獻,尤其在多相催化基礎微觀理論的發展上成果顯著,是國際理論催化領域具有重要影響力的學術帶頭人之一。在國際上,他率先采用密度泛函理論框架下的從頭算總能量計算方法,成功解決了與催化劑相關的量子力學計算難題。他在國際主流學術期刊上發表研究論文300余篇,其中包括《自然》及其子刊11篇、《美國化學會志》30余篇、《德國應用化學》(國際版)11篇、《物理評論快報》4篇。在其發表的論文中,有26篇為高被引論文(近30年來在理論催化領域被引次數排名前5%)。他的H指數為55,論文總被引次數超過10000次,在該領域國際同行中處于領先地位。
Professor Peijun Hu is a world-renowned expert in catalysis. He graduated from East China University of Science and Technology in 1982, obtained his doctoral degree from the University of Cambridge, UK, in 1993, and has served as a Professor at Queen's University Belfast, UK, since 2004. He was elected a Member of the Royal Irish Academy in 2009 and joined the School of Physical Science and Technology at ShanghaiTech University in 2023. His main research interests cover physical chemistry, theoretical and computational catalysis, as well as the application of artificial intelligence in catalysis and materials science. He has long been engaged in research on catalytic reaction simulation and catalyst theory. He has made significant contributions to the implementation and advancement of quantum mechanical calculations for heterogeneous catalytic reactions, particularly the development of the fundamental microscopic theory of heterogeneous catalysis, and is one of the internationally influential academic leaders in the field of theoretical catalysis. Internationally, he pioneered the successful solution to quantum mechanical calculation problems related to catalysts by adopting ab initio total energy calculations within the density functional theory framework. He has authored over 300 research papers in major international academic journals, including 11 publications in Nature and its sister journals, more than 30 in Journal of the American Chemical Society, 11 in Angewandte Chemie International Edition, and 4 in Physical Review Letters. Among his publications, 26 are highly cited papers (ranking among the top 5% in citation counts in theoretical catalysis over the past 30 years). He holds an H-index of 55 with total citations exceeding 10,000, ranking among the top international peers in the field.
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David.H.Parker
Radboud University
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David H. Parker,荷蘭拉德堡德大學終身教授、物理系主任,美國物理學會會士,中國教育部“長江學者獎勵計劃”講席學者。本科和博士分別畢業于美國加州大學歐文分校、洛杉磯分校,在哥倫比亞大學、加州大學圣克魯茲分校、荷蘭拉德堡德大學歷任助理教授、副教授、教授。常年致力于化學反應動力學研究,取得了一系列原創性科研成果。在世界上首次發明了離子速度成像(Velocity Map Imaging)技術,該技術在物理化學等眾多研究領域產生了重要而深遠的影響(單篇被引頻次3500余次),有力地推動了學科的發展與進步。截至目前,Parker教授在高水平國際期刊上共發表SCI論文190余篇,包括:2篇Science、3篇Nature Chemistry(封面)、多篇Phys. Rev. Lett.、J. Phys. Chem. Lett.、Annu. Rev. Phys. Chem.等,在Web of Science核心合集中總引用8600余次,H因子46。出版學術著作6部,主持數個歐盟重大科研項目,持續獲得歐盟研究委員會(ERC)和荷蘭國家科學基金會(NWO)重點、重大項目資助。在英國皇家化學會、美國物理聯合會等國際學術組織擔任重要兼職并多次在國際學術會議上作大會邀請報告,榮獲2018年度歐盟化學動力學會(MOLEC)、2019年度國際分子束會議(ISMB)及2024年度國際立體動力學會議高級研究成果獎。
Prof. David H. Parker is a tenured professor and Chair of the Department of Physics at Radboud University in the Netherlands. He is a Fellow of the American Physical Society and a Chair Professor under the Changjiang Scholars Program of the Ministry of Education of China. He received his bachelor’s degree from the University of California, Irvine, and his PhD from the University of California, Los Angeles. He has successively served as Assistant Professor, Associate Professor, and Professor at Columbia University, the University of California, Santa Cruz, and Radboud University in the Netherlands. Professor Parker has long been committed to research in chemical reaction dynamics and has achieved a series of original scientific results. He invented the technique of Velocity Map Imaging for the first time in the world, which has exerted an important and far-reaching impact on numerous research fields such as physical chemistry (with a single paper cited more than 3,500 times), strongly advancing the development and progress of the discipline. To date, Professor Parker has published more than 190 SCI papers in high-level international journals, including 2 in Science, 3 in Nature Chemistry (as cover articles), and multiple papers in Physical Review Letters, The Journal of Physical Chemistry Letters, and Annual Review of Physical Chemistry. His publications have received more than 8,600 citations in the Web of Science Core Collection, with an H-index of 46. He has authored 6 academic books and directed several major EU research projects, receiving continuous funding from key and flagship programs of the European Research Council (ERC) and the Netherlands Organization for Scientific Research (NWO). He holds important concurrent positions in international academic organizations such as the Royal Society of Chemistry and the American Institute of Physics, and has delivered numerous plenary and invited lectures at international academic conferences. His honors include the Senior Research Award of the European Molecular Beam Association (MOLEC) in 2018, the International Symposium on Molecular Beams (ISMB) Award in 2019, and the Senior Research Award of the International Symposium on Stereodynamics in 2024.
03
Gernot Frenking
Philipps-Universit?t Marburg
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格諾特?弗倫金教授(Gernot Frenking)是德國馬爾堡菲利普大學榮譽退休教授,國際知名理論化學家;同時擔任西班牙圣塞瓦斯蒂安多諾斯蒂亞國際物理中心伊克巴斯克訪問研究教授、中國南京工業大學訪問研究教授。其研究方向為化學鍵本質,重點聚焦主族元素化合物與過渡金屬配合物成鍵、含特殊化學鍵分子的成鍵分析,以及小分子活化反應機理。弗倫金教授1973年于亞琛工業大學獲化學文憑,曾赴日本京都師從福井謙一開展研究,1979年獲柏林工業大學博士學位,1984年完成理論有機化學任教資格論文,后在美國加州大學伯克利分校、斯坦福國際研究院等機構任職,1990年加入馬爾堡大學,1998年受聘理論化學教授。他對現代化學鍵理論貢獻突出,深化了配位鍵及非經典成鍵模式的認知,深刻影響主族元素與過渡金屬體系的成鍵及反應性研究。曾獲薛定諤獎章、埃里希?休克爾獎等多項榮譽,2008年當選英國皇家化學會會士。
Gernot Frenking, Professor Emeritus at Philipps-Universit?t Marburg, is a distinguished German theoretical chemist. He also serves as an Ikerbasque Visiting Research Professor at the Donostia International Physics Center in San Sebastián, Spain, and as a Visiting Research Professor at Nanjing Tech University, China. His research focuses on the nature of chemical bonding, particularly bonding in main-group compounds and transition-metal complexes, bonding analysis of molecules which possess unusual bonds and reaction mechanisms of small-molecule activation. Professor Frenking studied chemistry at RWTH Aachen, where he received his diploma in 1973. He then carried out research with Kenichi Fukui in Kyoto, Japan, and earned his doctorate from Technische Universit?t Berlin in 1979. He completed his habilitation in theoretical organic chemistry in 1984, held researcher postions in the United States, including at the University of California, Berkeley, and SRI International in Menlo Park, and joined Philipps-Universit?t Marburg in 1990. In 1998, he was appointed Professor of Theoretical Chemistry. Professor Frenking has made major contributions to modern chemical bonding theory. His work has advanced the understanding of dative bonding and other nonclassical bonding patterns, with lasting influence on the interpretation of bonding and reactivity in both main-group and transition-metal systems. He has received numerous honors, including the Schr?dinger Medal and the Erich Hückel Prize, and has been a Fellow of the Royal Society of Chemistry since 2008.
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Lai-Sheng Wang
Brown University
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Lai-Sheng Wang教授,1982年獲武漢大學化學學士學位,1990年獲加州大學伯克利分校化學博士學位,隨后在萊斯大學從事博士后研究。他曾任職于華盛頓州立大學與太平洋西北國家實驗室,2009年加入布朗大學,現任布朗大學Jesse H.以及Louisa D. Sharpe Metcalf化學講席教授,是實驗物理化學家,主要研究方向為納米團簇及溶液化學分子的氣相研究。其團隊結合光電子能譜、光電子成像、電噴霧電離與低溫離子阱等技術,系統研究團簇與復雜分子離子的電子結構及化學鍵合特性,在光譜學、團簇科學與現代物理化學領域貢獻卓著,帶領團隊率先發現并表征金團簇、芳香團簇與硼團簇,深化了納米團簇成鍵機理與團簇基納米材料的基礎認知;同時開拓了自由多電荷陰離子及溶液復雜物種的氣相光譜研究。其學術榮譽包括Earle K. Plyler獎、E. Bright Wilson光譜學獎與Herbert P. Broida獎。
Lai-Sheng Wang, is the Jesse H. and Louisa D. Sharpe Metcalf Professor of Chemistry at Brown University. He is an experimental physical chemist whose research focuses on nanoclusters and gas-phase studies of molecules derived from solution chemistry. His work combines photoelectron spectroscopy, photoelectron imaging, electrospray ionization, and cryogenic ion-trap methods to investigate the electronic structure and chemical bonding of clusters and complex molecular ions. Professor Wang received his B.S. in chemistry from Wuhan University in 1982 and his Ph.D. in chemistry from the University of California, Berkeley, in 1990. After postdoctoral research at Rice University, he held a joint appointment at Washington State University and Pacific Northwest National Laboratory before joining Brown University in 2009. Professor Wang has made major contributions to spectroscopy, cluster science, and modern physical chemistry. His group has played a leading role in the discovery and characterization of golden clusters, aromatic clusters, and boron clusters, advancing fundamental understanding of nanoclusters, chemical bonding, and cluster-based nanomaterials. He has also pioneered spectroscopic studies of free multiply charged anions and complex solution-derived species in the gas phase. His honors include the Earle K. Plyler Prize, the E. Bright Wilson Award in Spectroscopy, and the Herbert P. Broida Prize.
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Knut.A.Asmis
Universit?t Leipzig
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Knut.R.Asmis教授,現任萊比錫大學威廉?奧斯特瓦爾德物理與理論化學研究所物理化學教授,同時擔任2721 號研究訓練小組 “氫同位素” 發言人。他的研究方向為氣相孤立團簇與單納米顆粒的實驗研究,重點涉及離子溶劑化、多相催化、反應中間體及氣溶膠形成等領域。其課題組開發質譜與激光光譜學方法(包括低溫離子阱振動光譜),用于探究團簇與納米顆粒的結構、反應性及動力學特性。Asmis教授于弗里堡大學獲得碩士學位與博士學位,在加州大學伯克利分校完成博士后研究,并于柏林自由大學取得教授資格論文特許任教資格。入職萊比錫大學前,他曾任職于柏林自由大學及馬克斯?普朗克學會弗里茨?哈伯研究所,2014 年起擔任萊比錫大學物理化學教授。Asmis教授在物理化學與分子光譜學領域貢獻卓著,尤其在小分子聚集體光譜研究方面成果突出。他通過模型體系研究闡明了水中質子轉移過程(包含格羅特斯機理),并從分子層面揭示了催化反應機理。為表彰其學術成就,他于 2023 年榮獲德國本生學會范特霍夫獎。
Knut R. Asmis is Professor of Physical Chemistry at the Wilhelm-Ostwald Institute for Physical and Theoretical Chemistry at Universit?t Leipzig and Spokesperson of Research Training Group 2721 “Hydrogen Isotopes”. His research focuses on the experimental study of isolated clusters and single nanoparticles in the gas phase, especially in relation to ion solvation, heterogeneous catalysis, reactive intermediates, and aerosol formation. His group develops mass spectrometric and laser spectroscopic methods, including cryogenic ion trap vibrational spectroscopy, to investigate the structure, reactivity, and dynamics of clusters and nanoparticles. Professor Asmis received his diploma and doctorate from the Université de Fribourg, carried out postdoctoral research at the University of California, Berkeley, and completed his habilitation at Freie Universit?t Berlin. He later held research positions at Freie Universit?t Berlin and the Fritz Haber Institute of the Max Planck Society before joining Leipzig University, where he became Professor of Physical Chemistry in 2014. Professor Asmis has made important contributions to physical chemistry and molecular spectroscopy, in particular through his work on the spectroscopy of small molecular aggregates. His studies of model systems have helped clarify proton transfer in water, including the Grotthuss mechanism, and have provided molecular-level insight into catalytic processes. In recognition of these achievements, he was awarded the van’t Hoff Prize of the German Bunsen Society in 2023.
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John.E.McGrady
University of Oxford
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John E. McGrady教授是牛津大學無機化學系主任。本科畢業于牛津大學St Catherine’s College,隨后赴Australian National University攻讀博士,并于1994年獲得學位,此后在University of York任講師。2006年赴University of Glasgow擔任WestCHEM教授,2009年回到牛津任現職。McGrady教授長期從事無機體系電子結構研究,重點關注金屬團簇、金屬—金屬鍵及理論與實驗的結合,在Zintl團簇的生長機制與反應性研究方面具有重要影響力。其課題組研究涵蓋分子與固態過渡金屬化學及主族元素反應性,方法上從擴展Hückel等經驗理論到多組態自洽場(CASSCF)等高水平計算手段均有應用。
John E. McGrady is a professor at the University of Oxford and Head of the Department of Inorganic Chemistry. He completed his undergraduate studies at St Catherine’s College, Oxford, before pursuing his PhD at the Australian National University, where he obtained his degree in 1994. He subsequently worked as a lecturer at the University of York. In 2006, he joined the University of Glasgow as a West CHEM Professor, and returned to Oxford to take up his current position in 2009. Professor McGrady has long been engaged in research on the electronic structure of inorganic systems, with a focus on metal clusters, metal–metal bonding, and the integration of theory and experiment. He has made significant contributions to the study of the growth mechanisms and reactivity of Zintl clusters. His research group covers molecular and solid-state transition metal chemistry as well as main-group element reactivity, employing computational methods ranging from empirical approaches such as extended Hückel theory to high-level techniques including complete active space self-consistent field (CASSCF) calculations.
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Wolfgang J?ger
University of Alberta
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沃爾夫岡?耶格爾教授(Wolfgang J?ger)1989年于德國基爾大學獲化學博士學位。此后在加拿大不列顛哥倫比亞大學擔任博士后及研究助理,1995年加入加拿大阿爾伯塔大學化學系,2001年晉升為副教授,2003年升任正教授。耶格爾教授的研究方向多元,主要包括利用光譜技術研究弱相互作用復合物與團簇的分子間作用力、基于紅外固態二極管激光的大氣痕量氣體檢測技術、氣溶膠生成光反應模擬,以及采用微機電系統(MEMS)技術設計外腔激光器。相關成果已發表論文200余篇,并在國內外學術會議上多次受邀報告。憑借突出學術成就,他于2002年獲加拿大自然科學與工程研究理事會斯泰西紀念獎學金;2004年受聘一級加拿大研究主席(團簇科學方向),并于2011年連任;2008年當選加拿大皇家學會院士。2009至2010年,他憑借洪堡獎學金在德國柏林馬克斯?普朗克學會弗里茨?哈伯研究所進行學術休假研究。
Wolfgang J?ger received his PhD degree in Chemistry from the Christian Albrechts University in Kiel, Germany, in 1989. He joined the Department of Chemistry at the University of Alberta, Edmonton, Canada, in 1995 after spending time as postdoctoral fellow and research associate at the University of British Columbia, Vancouver, Canada. He was promoted to Associate Professor in 2001 and to the rank of Full Professor in 2003. Professor J?ger’s research is multifaceted and includes fundamental studies of intermolecular interactions using spectroscopic investigations of weakly bound complexes and clusters, development of atmospheric trace gas sensing techniques that utilize solid state infrared diode lasers, photoreaction chamber studies of aerosol formation, and design and fabrication of external cavity lasers using MEMS technology. His work has resulted in more than 200 publications and numerous presentations at national and international meetings. For his scientific achievements, Professor J?ger was awarded the NSERC Steacie Memorial Fellowship in 2002, in 2004 he became a Tier I Canada Research Chair in Cluster Science which was renewed in 2011, and in 2008 he was elected Fellow of the Royal Society of Canada. From 2009 to 2010, he spent a sabbatical year at the Fritz Haber Institute of the Max Planck Society in Berlin, Germany, which was funded by a prestigious Humboldt Fellowship.
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Yijing Yan
Hong Kong University of
Science and Technology
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嚴以京教授于1982年獲復旦大學化學學士學位,1989年獲美國羅切斯特大學化學博士學位。在Shaul Mukamel教授的指導下,他從事凝聚態分子光譜的理論研究。1988年至1994年,他先后在美國羅切斯特大學和加利福尼亞大學圣地亞哥分校開展博士后研究,并擔任副研究員。1994年,他加入香港科技大學任教,2010年起任職于中國科學技術大學。嚴教授曾獲國家自然科學基金委員會海外杰出青年科學基金、中國科學院海外杰出科學家獎,同時也是美國物理學會會士。
Professor Yan Yijing earned his Bachelor of Science degree in Chemistry from Fudan University in 1982 and his PhD in Chemistry from the University of Rochester, USA, in 1989. Under the supervision of Professor Shaul Mukamel, he engaged in theoretical research on condensed molecular spectroscopy. From 1988 to 1994, he conducted postdoctoral research and worked as an Associate Researcher successively at the University of Rochester and the University of California, San Diego, USA. He joined the Hong Kong University of Science and Technology as a faculty member in 1994 and began his tenure at the University of Science and Technology of China in 2010. Professor Yan was awarded the Overseas Outstanding Young Scientist Award by the National Natural Science Foundation of China and the Overseas Distinguished Scientist Award by the Chinese Academy of Sciences. He is also a Fellow of the American Physical Society.
來源:復旦大學
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