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首页> 外文期刊>ACS nano >Simultaneous enrichments of optical purity and (n,m) abundance of SWNTs through extraction with 3,6-carbazolylene-bridged chiral diporphyrin nanotweezers
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Simultaneous enrichments of optical purity and (n,m) abundance of SWNTs through extraction with 3,6-carbazolylene-bridged chiral diporphyrin nanotweezers

机译:通过3,6-咔唑桥联的手性双卟啉纳米镊子的萃取同时富集SWNT的光学纯度和(n,m)丰度

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Since structural control of single-walled carbon nanotubes (SWNTs) leads to control of their physical properties, isolation and synthesis of specific (n,m) structures of SWNTs have been extensively investigated in view of their technological applications. In this context, we developed a novel method for separating SWNTs through molecular recognition with chiral gable-type diporphyrins designated as "nanotweezers". The method allowed us to obtain optically active SWNTs, namely, the chiral SWNTs enriched in either left- or fight-handed helical form, for the first time. In this paper, we describe prominent optical enrichment of (7,5)-SWNTs through preferential extraction with chiral 3,6-carbazolylene-bridged nanotweezers as well as simultaneous enrichment of the abundance of (7,5)- and (8,4)-SWNTs. The (n,m) enrichment through this extraction is considered to result from the diameter differentiation of the nanotweezers, suggested by the complex structures in the theoretical calculations. That is, carbazolylene-bridged nanotweezers encapsulate a SWNT deeply enough to recognize the diameter of (7,5)-SWNTs. The deep contact is considered to realize the discrimination of the small diameter difference even less than 0.10 nm. This is a significant progress toward the separation of single species-of SWNTs consisting of single (n,m) structure with one helicity.
机译:由于单壁碳纳米管(SWNTs)的结构控制导致对其物理性质的控制,鉴于其技术应用,已经广泛研究了SWNTs特定(n,m)结构的分离和合成。在这种情况下,我们开发了一种通过分子识别与手性山墙型双卟啉命名为“ nanotweezers”的分离SWNTs的新方法。该方法使我们首次获得了旋光性SWNT,即富含左旋或战斗螺旋形式的手性SWNT。在本文中,我们描述了通过手性3,6-咔唑桥式纳米镊优先萃取以及同时富集(7,5)-和(8,4)的丰度,通过(7,5)-SWNTs的显着光学富集。 )-SWNT。通过这种提取的(n,m)富集被认为是由于纳米镊子的直径差异所致,这是由理论计算中的复杂结构暗示的。也就是说,咔唑桥式纳米镊子将SWNT封装得足够深,足以识别(7,5)-SWNT的直径。认为深接触实现了甚至小于0.10nm的小直径差的辨别。这是分离单一种类的单壁碳纳米管的重大进展,单壁碳纳米管由具有一个螺旋的单一(n,m)结构组成。

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