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三联体光敏剂 - 纳米管共轭物:电荷稳定的钯卟啉/碳纳米管共轭物的合成、表征及光化学

Triplet photosensitizer-nanotube conjugates: synthesis, characterization and photochemistry of charge stabilizing, palladium porphyrin/carbon nanotube conjugates.

作者信息

Arellano Luis M, Gobeze Habtom B, Gómez-Escalonilla María J, Fierro José Luis G, D'Souza Francis, Langa Fernando

机构信息

Universidad de Castilla-La Mancha, Instituto de Nanociencia, Nanotecnología y Materiales Moleculares (INAMOL), 45071-Toledo, Spain.

Chemistry and Materials Science and Engineering, University of North Texas, 76203-5017 Denton, TX, USA. Francis.D'

出版信息

Nanoscale. 2020 May 7;12(17):9890-9898. doi: 10.1039/d0nr02136a.

Abstract

The ability of a triplet photosensitizer to generate long-lived charge separated states, in contrast to traditionally used singlet photosensitizers, in covalently functionalized single-walled carbon nanotube hybrids has been investigated. Enriched single-walled carbon nanotubes with two diameters, namely (6,5) and (7,6), were covalently modified to carry a charge-stabilizing triplet photosensitizer derived from a palladium porphyrin. The nanohybrids were fully characterized and the presence of intramolecular interactions between the porphyrin and nanotubes was established from various spectroscopic, imaging, electrochemical and thermochemical studies. Photoluminescence of palladium porphyrin was found to be quantitatively quenched in the presence of covalently appended SWCNTs and this quenching is due to excited state charge separation and has been established by femtosecond transient absorption studies. Owing to the presence of the triplet photosensitizer, the charge separated states lasted over 3 ns, i.e., much longer than those reported earlier for singlet photosensitizer-derived nanotube hybrids. The nanohybrids also exhibited efficient photocatalytic behavior in experiments involving electron pooling of one-electron reduced methyl viologen in the presence of a sacrificial electron donor. Higher yields of photoproducts were achieved from the present donor-acceptor nanohybrids when compared with those of singlet photosensitizer-derived nanohybrids, more so for (6,5) nanotube derived hybrids compared to (7,6) nanotube derived hybrids. The present findings highlight the importance of triplet photosensitizer derived nanohybrids in artificial photosynthesis of charge separation and photocatalytic applicatons.

摘要

与传统使用的单线态光敏剂相比,研究了三重态光敏剂在共价功能化单壁碳纳米管杂化物中产生长寿命电荷分离态的能力。对两种直径的富集单壁碳纳米管,即(6,5)和(7,6),进行共价修饰,使其携带一种源自钯卟啉的电荷稳定三重态光敏剂。对纳米杂化物进行了全面表征,并通过各种光谱、成像、电化学和热化学研究确定了卟啉与纳米管之间存在分子内相互作用。发现在共价连接的单壁碳纳米管存在下,钯卟啉的光致发光被定量猝灭,这种猝灭是由于激发态电荷分离引起的,并且已通过飞秒瞬态吸收研究得到证实。由于三重态光敏剂的存在,电荷分离态持续超过3 ns,即比先前报道的单线态光敏剂衍生的纳米管杂化物的持续时间长得多。在涉及牺牲电子供体存在下单电子还原甲基紫精的电子聚集的实验中,纳米杂化物还表现出有效的光催化行为。与单线态光敏剂衍生的纳米杂化物相比,本供体-受体纳米杂化物获得了更高产率的光产物,对于(6,5)纳米管衍生的杂化物而言,比(7,6)纳米管衍生的杂化物更是如此。本研究结果突出了三重态光敏剂衍生的纳米杂化物在电荷分离的人工光合作用和光催化应用中的重要性。

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