Collaborative Research: Hydrogen Atom Transfer Lewis Base Catalysis
合作研究:氢原子转移路易斯碱催化
基本信息
- 批准号:2102712
- 负责人:
- 金额:$ 47.5万
- 依托单位:
- 依托单位国家:美国
- 项目类别:Continuing Grant
- 财政年份:2021
- 资助国家:美国
- 起止时间:2021-09-01 至 2024-08-31
- 项目状态:已结题
- 来源:
- 关键词:
项目摘要
With funding from the Chemical Synthesis Program in the Chemistry Division, Junha Jeon at the Department of Chemistry at the University of Texas at Arlington and Gyu Leem at the Department of Chemistry of the SUNY College of Environmental Science and Forestry are developing new methods to use inexpensive and environmentally benign silicon-based reagents to produce high-value chemicals and materials. A number of chemical processes involve the transfer of both a hydrogen and an electron (the process is abbreviated HAT). This study utilizes silicon complexes in the presence of potassium to provide access to both hydrogen atom (hydrogen and one electron) and hydride (hydrogen and two electrons) transfer. If successful, these studies could provide low-cost, operationally simple, environmentally sustainable HAT and open up new avenues to the synthesis of key intermediates and useful polymeric materials. The broader impacts of this research include the recruitment and training of the next generation of scientists, with a particular emphasis on encouraging participation from women and underrepresented minority groups in the chemical sciences. This multi-disciplinary project involves Dr. Junha Jeon [synthetic silicon chemistry, University of Texas at Arlington] and Dr. Gyu Leem [polymer chemistry, SUNY College of Environmental Science and Forestry] as the primary investigators. In addition, there are two additional collaborations involving Drs. Jiali Gao [computational, University of Minnesota] and Brad Pierce [EPR spectroscopy, University of Alabama]. Through theoretical and experimental methods, the mechanistic origin of 'hydrogen-hydride transfer duality' associated with a potassiated hypercoordinate hydridosilicon species is determined. The of 'hydrogen-hydride transfer duality' refers to a mode of competing single or two-electron transfer reactions of hypercoordinative hydrosilicon systems and is termed alkali metal Lewis base-catalyzed complexation-induced hydrogen atom transfer. In addition to the mechanistic investigations, (1) enantioselective redox-neutral, branch-selective olefin hydrosilylation via LBCI-HAT and (2) the extension of the process to alkali metal-Lewis base-catalyzed, hydrogen atom transfer radical polymerization (HATRP) and chain extension of HATRP for the synthesis of of multiblock copolymers are developed.This award reflects NSF's statutory mission and has been deemed worthy of support through evaluation using the Foundation's intellectual merit and broader impacts review criteria.
在化学学部化学合成项目的资助下,德克萨斯大学阿灵顿分校化学系的Junha Jeon和纽约州立大学环境科学与林业学院化学系的Gyu Leem正在开发新方法,使用廉价且对环境无害的硅基试剂来生产高价值的化学品和材料。许多化学过程都涉及氢和电子的转移(该过程缩写为HAT)。本研究利用硅配合物在钾的存在下提供氢原子(氢和一个电子)和氢化物(氢和两个电子)的转移。如果成功,这些研究可以提供低成本、操作简单、环境可持续的HAT,并为合成关键中间体和有用的聚合物材料开辟新的途径。这项研究的更广泛的影响包括招募和培训下一代科学家,特别强调鼓励妇女和代表性不足的少数群体参与化学科学。这个多学科项目包括Junha Jeon博士(阿灵顿德克萨斯大学合成硅化学)和Gyu Leem博士(纽约州立大学环境科学与林业学院聚合物化学)作为主要研究人员。此外,还有两个额外的合作涉及博士。Jiali Gao[计算,明尼苏达大学]和Brad Pierce [EPR光谱学,阿拉巴马大学]。通过理论和实验方法,确定了与钾化超配位氢硅相关的“氢化物转移二象性”的机制起源。氢-氢化物转移对偶性是指超配位氢硅体系的一种竞争性单电子或双电子转移反应模式,称为碱金属路易斯碱催化络合诱导氢原子转移。除机理研究外,还开展了(1)通过LBCI-HAT对映选择性氧化还原-中性、支选择性烯烃硅氢化反应和(2)将该工艺扩展到碱金属-路易斯碱催化的氢原子转移自由基聚合(HATRP)和HATRP链扩展合成多嵌段共聚物的研究。该奖项反映了美国国家科学基金会的法定使命,并通过使用基金会的知识价值和更广泛的影响审查标准进行评估,被认为值得支持。
项目成果
期刊论文数量(0)
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Junha Jeon其他文献
Gold‐Mediated Isomerization of Cyclooctyne to Ring Fused Olefinic Bicycles
金介导的环辛炔异构化为环稠合烯烃双环
- DOI:
10.1002/ejic.201600021 - 发表时间:
2016 - 期刊:
- 影响因子:2.3
- 作者:
Animesh Das;Yuanda Hua;M. Yousufuddin;T. Cundari;Junha Jeon;H. V. Rasika Dias - 通讯作者:
H. V. Rasika Dias
Palladium-Catalyzed C–H Benzannulation of Functionalized Furans and Pyrroles with Alkynes
钯催化官能化呋喃和吡咯与炔烃的 C–H 苯并环化反应
- DOI:
10.1055/a-1502-3641 - 发表时间:
2021 - 期刊:
- 影响因子:0
- 作者:
Jia Seo;Che;Shih‐Ching Chuang;Jung Min Joo;Woohyeong Lee;Junha Jeon;Pei - 通讯作者:
Pei
Metathesis Involving a Relay and Applications in Natural Product Synthesis
涉及继电器的复分解及其在天然产物合成中的应用
- DOI:
10.1002/9783527629626.ch9 - 发表时间:
2010 - 期刊:
- 影响因子:0
- 作者:
T. Hoye;Junha Jeon - 通讯作者:
Junha Jeon
Gas chromatography-vacuum ultraviolet spectroscopic analysis of organosilanes
- DOI:
10.1016/j.talanta.2020.121781 - 发表时间:
2021-02-01 - 期刊:
- 影响因子:
- 作者:
Changling Qiu;Parham Asgari;X. James Mao;Junha Jeon;Kevin A. Schug - 通讯作者:
Kevin A. Schug
Junha Jeon的其他文献
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