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Carbon nanotube nanocomposites: quasi 1-dimensional structures for electron transfer

机译:碳纳米管纳米复合材料:准一维结构的电子转移

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We integrated single wall carbon nanotubes (SWNT), several water-soluble pyrene derivatives, which either bear negatively (pyrene~-) or positively charged (pyrene~+) charged ionic headgroups, and a series of water-soluble metalloporphyrins (MP~(8+) / MP~(8-)) into functional nanohybrids through a combination of associative van-der-Waals and electrostatic interactions. The resulting SWNT / pyrene and SWNT / pyrene/ MP were characterized by spectroscopic and microscopic means and were found to form stable nanohybrid structures in aqueous media. When the nanohybrid systems are photoexcited with visible light, a rapid intrahybrid charge separation causes the reduction of the electron accepting SWNT and, simultaneously, the oxidation of the electron donating MP. Beneficial are charge recombination dynamics that are located in the Marcus-inverted region.
机译:我们整合了单壁碳纳米管(SWNT),几种带有负电荷(pyrene〜-)或带正电荷(pyrene〜+)的离子头基的水溶性pyr衍生物以及一系列水溶性金属卟啉(MP〜( 8+)/ MP〜(8-))通过范德华缔合和静电相互作用结合成功能性纳米杂化物。所得的SWNT / pyr和SWNT / pyr / MP通过光谱和显微手段表征,发现在水性介质中形成稳定的纳米杂化结构。当纳米杂化系统被可见光光激发时,快速的杂化内电荷分离会导致接受电子的SWNT减少,同时使给电子的MP氧化。有利的是位于马库斯反转区域的电荷重组动力学。

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