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Identifying and Breaking Scaling Relations in Molecular Catalysis of Electrochemical Reactions

机译:在电化学反应的分子催化中识别和打破比例关系

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摘要

Improving molecular catalysis for important electrochemical proton-coupled electron transfer (PCET) reactions, such as the interconversions of H~+/H_2, O_2/H_2O, CO_2/CO, and N_2/NH_3, is an ongoing challenge. Synthetic modifications to the molecular catalysts are valuable but often show trade-offs between turnover frequency (TOF) and the effective overpotential required to initiate catalysis (n_(eff)). Herein, we derive a new approach for improving efficiencies - higher TOF at lower n_(eff) - by changing the concentrations and properties of the reactants and products, rather than by modifying the catalyst. The dependence of TOF on n_(eff) is shown to be quite different upon changing, for instance, the pK_a of the acid HA versus the concentration or partial pressure of a reactant or product. Using the electrochemical reduction of dioxygen catalyzed by iron porphyrins in DMF as an example, decreasing [HA] 10-fold lowers n_(eff) by 59 mV and decreases the TOF by a factor of 10. Alternatively, a 10-fold decrease in K_a(HA) also lowers n_(eff) by 59 mV but only decreases the TOF by a factor of 2. This approach has been used to improve a catalytic TOF by 10~4 vs the previously reported scaling relationship developed via synthetic modifications to the catalyst. The analysis has the potential to predict improved efficiency and product selectivity of any molecular PCET catalyst, based on its mechanism and rate law.
机译:对于重要的质子耦合电子转移(PCET)反应,例如H〜+ / H_2,O_2 / H_2O,CO_2 / CO和N_2 / NH_3的相互转化,改善分子催​​化是一项持续的挑战。对分子催化剂的合成修饰很有价值,但通常会在周转频率(TOF)和引发催化所需的有效超电势(n_(eff))之间进行权衡。本文中,我们通过改变反应物和产物的浓度和性质,而不是通过改性催化剂,来获得一种提高效率的新方法-在较低的n_(eff)下获得较高的TOF。在改变例如酸HA的pK_a相对于反应物或产物的浓度或分压时,TOF对n_(eff)的依赖性显示出完全不同。以DMF中卟啉铁催化的双氧电化学还原为例,将[HA]降低10倍可使n_(eff)降低59 mV,并使TOF降低10倍。或者,K_a降低10倍。 (HA)还可将n_(eff)降低59 mV,但仅将TOF降低2倍。与先前报道的通过对催化剂进行合成修饰而开发的结垢关系相比,该方法已被用于将催化TOF提高10〜4 。根据其机理和速率规律,该分析有可能预测任何分子PCET催化剂的效率和产物选择性提高。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2017年第32期|11000-11003|共4页
  • 作者单位

    Department of Chemistry, Yale University, New Haven, CT, United States;

    Department of Chemistry, Yale University, New Haven, CT, United States;

    Department of Chemistry, Yale University, New Haven, CT, United States;

    Department of Chemistry, Yale University, New Haven, CT, 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
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