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锰卟啉在 Ag(111)表面上的分子氧均裂。

Homolytic cleavage of molecular oxygen by manganese porphyrins supported on Ag(111).

机构信息

Centre for Research on Adaptive Nanostructures and Nanodevices (CRANN), School of Physics, Trinity College Dublin, Dublin 2, Ireland.

出版信息

ACS Nano. 2014 May 27;8(5):5190-8. doi: 10.1021/nn501240j. Epub 2014 Apr 30.

Abstract

Oxygen binding and cleavage are important for both molecular recognition and catalysis. Mn-based porphyrins in particular are used as catalysts for the epoxidation of alkenes, and in this study the homolytic cleavage of O2 by a surface-supported monolayer of Mn porphyrins on Ag(111) is demonstrated by scanning tunneling microscopy, X-ray absorption, and X-ray photoemission. As deposited, {5,10,15,20-tetraphenylporphyrinato}Mn(III)Cl (MnClTPP) adopts a saddle conformation with the average plane of its macrocycle parallel to the substrate and the axial Cl ligand pointing upward, away from the substrate. The adsorption of MnClTPP on Ag(111) is accompanied by a reduction of the Mn oxidation state from Mn(III) to Mn(II) due to charge transfer between the substrate and the molecule. Annealing the Mn(II)ClTPP monolayer up to 510 K causes the chlorine ligands to desorb from the porphyrins while leaving the monolayer intact. The Mn(II)TPP is stabilized by the surface acting as an axial ligand for the metal center. Exposure of the Mn(II)TPP/Ag(111) system to molecular oxygen results in the dissociation of O2 and forms pairs of Mn(III)OTPP molecules on the surface. Annealing at 445 K reduces the Mn(III)OTPP complex back to Mn(II)TPP/Ag(111). The activation energies for Cl and O removal were found to be 0.35 ± 0.02 eV and 0.26 ± 0.03 eV, respectively.

摘要

氧的结合和裂解对于分子识别和催化都很重要。特别是锰卟啉,被用作烯烃环氧化的催化剂,在这项研究中,通过扫描隧道显微镜、X 射线吸收和 X 射线光电子能谱,证明了 Ag(111)表面上单层锰卟啉对 O2 的均裂裂解。沉积时,{5,10,15,20-四苯基卟啉基}Mn(III)Cl(MnClTPP)采用鞍形构象,其大环平面与基底平行,轴向 Cl 配体向上,远离基底。MnClTPP 在 Ag(111)上的吸附伴随着 Mn 氧化态从 Mn(III)到 Mn(II)的还原,这是由于基底和分子之间的电荷转移。将 Mn(II)ClTPP 单层升温至 510 K 会导致氯配体从卟啉上脱附,而单层保持完整。Mn(II)TPP 由表面稳定,作为金属中心的轴向配体。将 Mn(II)TPP/Ag(111)系统暴露于氧气中会导致 O2 的解离,并在表面上形成 Mn(III)OTPP 分子对。在 445 K 下退火会将 Mn(III)OTPP 络合物还原回 Mn(II)TPP/Ag(111)。Cl 和 O 脱除的活化能分别为 0.35±0.02 eV 和 0.26±0.03 eV。

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