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直接稠合卟啉共轭聚合物的电子与能级工程——中心金属阳离子的影响

Electronic and energy level engineering of directly fused porphyrin-conjugated polymers - impact of the central metal cation.

作者信息

Cardenas-Morcoso Drialys, Vey Eloa, Heiderscheid Max, Frache Gilles, Boscher Nicolas D

机构信息

Materials Research and Technology Department, Luxembourg Institute of Science and Technology 28 avenue des Hauts-Fourneaux Esch-sur-Alzette Luxembourg

出版信息

J Mater Chem C Mater. 2022 Jan 24;10(6):2194-2204. doi: 10.1039/d1tc05452j. eCollection 2022 Feb 10.

Abstract

The integration of porphyrins and their derivatives in functional devices for solar-assisted fuel production is both highly attractive and challenging due to the difficulties in processing them. This limitation is overcome in the gas-phase approach, particularly by oxidative chemical vapor deposition (oCVD), leading to the simultaneous synthesis and deposition of conjugated porphyrin coatings. We have investigated the impact of the metal cation of 5,15-diphenyl metalloporphyrins (MDPP; M = Co, Cu, Mg, Zn, Pd, Pt, Ag, Ru, Ag, and FeCl) on the dehydrogenative coupling reaction leading to fused-metalloporphyrin thin films oCVD and on the optoelectronic properties of the resulting thin films. We found that the nature of the chelated cation strongly affects the intermolecular coupling efficiency, as well as the occurrence of side reactions such as chlorination, intramolecular cyclization, demetallation/re-metalation, and oxidation of the porphyrin core. Moreover, we discussed the influence of the above-mentioned reactions on the optoelectronic properties of the fused metalloporphyrin coatings, in view of their potential application in photo-electrocatalytic systems. This study paves the way toward the engineering and future implementation of porphyrin-based systems for clean and efficient solar fuel production.

摘要

由于卟啉及其衍生物在加工过程中存在困难,将其集成到用于太阳能辅助燃料生产的功能器件中既极具吸引力又具有挑战性。气相法克服了这一限制,特别是通过氧化化学气相沉积(oCVD),实现了共轭卟啉涂层的同时合成和沉积。我们研究了5,15-二苯基金属卟啉(MDPP;M = Co、Cu、Mg、Zn、Pd、Pt、Ag、Ru、Ag和FeCl)的金属阳离子对导致稠合金属卟啉薄膜oCVD的脱氢偶联反应以及所得薄膜的光电性能的影响。我们发现螯合阳离子的性质强烈影响分子间偶联效率,以及诸如氯化、分子内环化、脱金属/再金属化和卟啉核心氧化等副反应的发生。此外,鉴于它们在光电催化系统中的潜在应用,我们讨论了上述反应对稠合金属卟啉涂层光电性能的影响。这项研究为基于卟啉的系统用于清洁高效太阳能燃料生产的工程设计和未来实施铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d5d3/8830115/90604fd22652/d1tc05452j-s1.jpg

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