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Determining Proton-Coupled Standard Potentials and X-H Bond Dissociation Free Energies in Nonaqueous Solvents Using Open-Circuit Potential Measurements

机译:使用开路电位测量确定非水溶剂中的质子偶联标准电位和X-H粘合解离能

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摘要

Proton-coupled electron transfer (PCET) reactions are increasingly being studied in nonaqueous conditions, where the thermochemistry of PCET substrates is largely unknown. Herein, we report a method to obtain electrochemical standard potentials and calculate the corresponding bond dissociation free energies (BDFEs) of stable PCET reagents in nonaqueous solvents, using open-circuit potential (OCP) measurements. With this method, we measure PCET thermochemistry in acetonitrile and tetrahydrofuran for substrates with O-H and N-H bonds that undergo 1e~-/1H~+ and 2e~-/2H~+ redox processes. We also report corrected thermochemical values for the 1/2H_2(g)/H~·_(1M) and H~+/H~· (C_G) couples in several organic solvents. For 2e~-/2H~+ couples, OCP measurements provide the multi-electron/multiproton standard potential and the average of the two X-H BDFEs. In contrast to traditional approaches for calculating BDFEs from electrochemical measurements, the OCP method directly measures the overall PCET reaction thermodynamics and avoids the need for a pK_a scale in the solvent of interest. Consequently, the OCP approach yields more accurate thermochemical values and should be general to any solvent mixture compatible with electrochemical measurements. The longer time scale of OCP measurements enables accurate thermochemical measurements for redox couples with irreversible or distorted electrochemical responses by cyclic voltammetry, provided the PCET reaction is chemically reversible. Recommendations for successful OCP measurements and limitations of the approach are discussed, including the current inability to measure processes involving C-H bonds. As a straightforward and robust technique to determine nonaqueous PCET thermochemistry, these OCP measurements will be broadly valuable, with applications ranging from fundamental reactivity studies to device development.
机译:在非水条件下越来越多地研究质子偶联电子转移(PCET)反应,其中PCET基板的热化学在很大程度上是未知的。在此,我们报告了一种方法以获得电化学标准电位,并使用开路电位(OCP)测量来计算非水溶剂中的稳定PCET试剂的相应粘接性解离能量(BDFE)。通过这种方法,我们测量乙腈和四氢呋喃的PCET热化学,其用O-H和N-H键,经历1E〜 - / 1H〜+和2E〜/ 2H〜+氧化还原方法。我们还报告了几种有机溶剂中的1 / 2H_2(g)/ h〜·_(1m)和h〜+ / h〜·(c_g)夫妇的校正热化学价值。对于2E〜 - / 2H〜+夫妻,OCP测量提供了多电子/多滴水标准电位和两个X-H BDFE的平均值。与从电化学测量计算BDFES的传统方法形成对比,OCP方法直接测量整体PCET反应热力学,并避免在感兴趣的溶剂中进行PK_A规模。因此,OCP方法产生更准确的热化学价值,并且应该是通用的任何与电化学测量相容的溶剂混合物。 ECP测量的较长时间标度使得通过循环伏安法通过循环伏安法具有不可逆或扭曲的电化学响应的氧化还原耦合的准确的热化学测量,只要PCET反应是化学可逆的。讨论了成功的OCP测量和方法的局限性的建议,包括目前无法测量涉及C-H键的过程。作为直接和稳健的技术来确定非水性型PCET热化学,这些OCP测量将是广泛的价值,应用范围从基本反应性研究到设备开发。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2020年第24期|10681-10691|共11页
  • 作者单位

    Department of Chemistry Yale University New Haven Connecticut 06520-8107 United States;

    Department of Chemistry Yale University New Haven Connecticut 06520-8107 United States;

    Department of Chemistry Yale University New Haven Connecticut 06520-8107 United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-18 22:16:45

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