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氮原子配位调控的过渡金属催化剂用于一氧化氮的氧化和还原。

Nitrogen atom coordination tuned transition metal catalysts for NO oxidation and reduction.

机构信息

College of Chemistry, Chemical Engineering and Resource Utilization, Northeast Forestry University, Harbin, 150040, China.

College of Arts and Sciences, Northeast Agricultural University, Harbin, 150030, China.

出版信息

Chemosphere. 2022 Dec;309(Pt 2):136735. doi: 10.1016/j.chemosphere.2022.136735. Epub 2022 Oct 6.

DOI:10.1016/j.chemosphere.2022.136735
PMID:36209844
Abstract

Developing an efficient catalyst for NO oxidation and reduction at ambient temperature is a significant challenge. Recent studies have suggested that the N-coordinated transition metal (TM) single atom catalysts (SACs) have high catalytic activity and stability. Herein, we report the activation potential of a series of 3d TM atoms supported on N coordination-tuned graphene (GR) for NO oxidation and reduction. The results show that the N coordination pattern can greatly alter the catalytic reactivity of TM on the catalysts, and the TM atom on the catalysts with three-coordinated pyridinic nitrogen TM-N@GR exhibit the strongest chemical activity. Among the TM-N@GR catalysts, Ti-N@GR is the most promising candidate. The rate constants and equilibrium constants were calculated to evaluate the kinetic and thermodynamic feasibility of the catalytic reaction, respectively. Our results demonstrate that the reduction of NO to N on Ti-N@GR can occur at ambient temperature with a large exotherm of 6.99 eV, and the oxidation of NO to NO on Ti-N@GR can easily proceed when the temperature reaches 360 K with a large equilibrium constant. Our studies are of great significance for understanding the performance of N coordination-tuned catalysts and designing Ti-based catalysts for NO oxidation and reduction.

摘要

在环境温度下开发高效的 NO 氧化和还原催化剂是一个重大挑战。最近的研究表明,N 配位的过渡金属(TM)单原子催化剂(SACs)具有高的催化活性和稳定性。在此,我们报告了一系列负载在 N 配位调变石墨烯(GR)上的 3d TM 原子对 NO 氧化和还原的活化能。结果表明,N 配位模式可以极大地改变催化剂上 TM 的催化反应性,并且具有三配位吡啶氮 TM-N@GR 的催化剂上的 TM 原子表现出最强的化学活性。在 TM-N@GR 催化剂中,Ti-N@GR 是最有前途的候选者。通过计算速率常数和平衡常数,分别评估了催化反应的动力学和热力学可行性。我们的研究结果表明,NO 在 Ti-N@GR 上还原为 N 可以在环境温度下进行,放热为 6.99 eV,而 NO 在 Ti-N@GR 上氧化为 NO 时,当温度达到 360 K 时,平衡常数很大,反应很容易进行。我们的研究对于理解 N 配位调变催化剂的性能和设计 Ti 基催化剂用于 NO 氧化和还原具有重要意义。

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