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CAREER: Mapping the Mechanisms of Photoredox Catalysis with Multidimensional Optical Spectroscopy

CAREER: Mapping the Mechanisms of Photoredox Catalysis with Multidimensional Optical Spectroscopy
职业:利用多维光谱绘制光氧化还原催化机制
批准号:
2236610
负责人:
Vanessa Huxter
金额:
$65.0万
依托单位:
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2023
资助国家:
美国
项目状态:
未结题
起止时间:
2023-02-15 至 2028-01-31

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英文摘要
With support from the Chemical Structure, Dynamics, and Mechanisms A (CSDM-A) program in the Division of Chemistry, Vanessa Huxter of the University of Arizona is using advanced spectroscopic methods to study the initial steps of light-driven catalytic reactions that generate both simple and complex molecules under mild conditions. To understand how these reactions work, Dr. Huxter and her students will use pulses of light as short as a millionth of a billionth of a second (one femtosecond), to track the chemical species produced by light-triggered chemical reactions over a wide range of times. The project will address the knowledge gap between the short lifetimes of intermediate radical species that are implicated in driving such reactions, and the longer timescales of diffusion required for those reaction to happen. Their discoveries could lead to a better understanding of catalysts used in the synthesis of industrially and pharmaceutically important chemicals that are otherwise difficult to produce. In addition, graduate students working on this project will receive advanced training in multiple disciplines, including optics, chemistry, and physics, and the project will engage students of underserved communities through the development and deployment of 3D-printed spectrometers that will bring hands-on learning to students from historically underrepresented groups. The Huxter group uses time-resolved fluorescence, ultrafast broadband transient absorption, and two-dimensional electronic spectroscopy across a wide range of time and energy scales to study photoinduced single-electron transfer in photoredox catalytic systems. The initial steps of organic photoredox catalytic processes will be tracked to reveal the free energy landscapes associated with such reaction mechanisms. This research will identify the driving forces and intermediate states for photoredox catalytic reactions, which could open pathways to design new, efficient catalysts. This work could contribute to the resolution of a controversy regarding the mismatch between the short lifetimes of radical intermediates and the requirement for diffusion-limited bimolecular interactions. The role of radicals as intermediates in photoredox catalysis will be further studied using isolatable neutral radicals. In addition, the Huxter group will investigate the influence vibrational modes on photocatalytic charge transfer events.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.
期刊论文(1)
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会议论文
Temperature-Dependent Spin-Driven Dimerization Determines the Ultrafast Dynamics of a Copper(II)-Bound Tripyrrindione Radical
温度依赖性自旋驱动二聚决定了铜 (II) 结合三吡啶二酮自由基的超快动力学
DOI: 10.1021/acs.jpclett.3c02726
发表时间: 2023
期刊: The Journal of Physical Chemistry Letters
影响因子: --
作者: [Kumar, Anshu, Thompson, Benjamin, Gautam, Ritika, Tomat, Elisa, Huxter, Vanessa]
通讯作者: Huxter, Vanessa
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