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层状双氢氧化物/叶绿素a混合纳米天线的制备:关键步骤。

Preparation of layered double hydroxide/chlorophyll a hybrid nano-antennae: a key step.

作者信息

Sommer Márquez Alicia E, Lerner Dan A, Fetter Geolar, Bosch Pedro, Tichit Didier, Palomares Eduardo

机构信息

Facultad de Ciencias Químicas, Universidad Autónoma de Puebla, Blvd. 14 Sur, 72570 Pueblo, PUE, Mexico.

出版信息

Dalton Trans. 2014 Jul 21;43(27):10521-8. doi: 10.1039/c4dt00113c. Epub 2014 Mar 28.

Abstract

In the first step to obtain an efficient nano-antenna in a bottom-up approach, new hybrid materials were synthesized using a set of layered double hydroxides (LDHs) with basic properties and pure chlorophyll a (Chl a). The stability of the adsorbed monolayer of Chl a was shown to be dependent on the nature and the ratio of the different metal ions present in the LDHs tested. The hybrid materials turned out to be adequate for stabilizing Chl a on Mg/Al LDHs for more than a month under ambient conditions while a limited catalytic decomposition was observed for the Ni/Al LDHs leading to the formation of pheophytin. These changes were followed by namely XRD, DR-UV-vis and fluorescence spectroscopies of the hybrid antennae and of the solutions obtained from their lixiviation with acetone or diethylether. On Mg/Al hydrotalcites the stability of the adsorbed Chl a was equivalent for values of the metal atom ratio ranging from 2 to 4. The latter hybrids should constitute a good basis to form efficient nanoscale light harvesting units following intercalation of selected dyes. This work describes an efficient preparation of Chl a that allows scale-up as well as the obtention of a stable Chl a monolayer on the surface of various LDHs.

摘要

在通过自下而上的方法获得高效纳米天线的第一步中,使用一组具有碱性的层状双氢氧化物(LDHs)和纯叶绿素a(Chl a)合成了新型杂化材料。结果表明,Chl a吸附单层的稳定性取决于所测试的LDHs中存在的不同金属离子的性质和比例。在环境条件下,杂化材料足以使Chl a在Mg/Al LDHs上稳定一个多月,而对于Ni/Al LDHs则观察到有限的催化分解,导致脱镁叶绿素的形成。通过对杂化天线及其用丙酮或二乙醚浸析得到的溶液进行XRD、DR-UV-vis和荧光光谱分析来跟踪这些变化。在Mg/Al水滑石上,对于金属原子比为2至4的值,吸附的Chl a的稳定性是等效的。在插入选定的染料后,后一种杂化物应构成形成高效纳米级光捕获单元的良好基础。这项工作描述了一种高效的Chl a制备方法,该方法允许扩大规模,并在各种LDHs表面获得稳定的Chl a单层。

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