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自组装吡嗪纳米管。

Self-assembled pyrazinacene nanotubes.

机构信息

WPI-Center for Materials Nanoarchitectonics, National Institute of Materials Science, Namiki 1-1, Tsukuba, Ibaraki, 305-0044, Japan.

出版信息

Phys Chem Chem Phys. 2011 Mar 21;13(11):4868-76. doi: 10.1039/c0cp02025g. Epub 2011 Jan 12.

DOI:10.1039/c0cp02025g
PMID:21225075
Abstract

Nanotubes of a pentacene derivative, 6,13-bis(1-n-dodecyl)-[a,c,l,n]-tetrabenzo-5,6,7,12,13,14-hexaazapentacene, have been prepared by a hierarchical self-assembly mechanism. The oligoazaacenes 1-3, referred to as pyrazinacenes due to their structures of linearly fused pyrazine heterocycles, can also be considered as two azatriphenylenes fused through a reduced pyrazine ring. Dissolution of 6,13-bis(1-n-dodecyl)-[a,c,l,n]-tetrabenzo-5,6,7,12,13,14-hexaaza pentacene in nearly boiling toluene followed by standing of the solution at room temperature yields self-assembled (sa) pyrazinacene (Pa) nanotubes (NT's), or sa-PaNTs. Self-assembled-PaNTs are formed after initial aggregation of the pyrazinacene giving a 130-nm-wide 2-dimensional tape followed by helical twisting of this tape into a hollow cylindrical form of 150-200 nm diameter which can exceed 10 μm in length. The morphologies of the tape and nanotube structures were investigated using scanning electron microscopy (SEM), transmission electron microscopy (TEM), powder X-ray diffraction (XRD) and electron absorption spectroscopy (UV/Vis). The latter indicates that the tubes may be formed by chromophore J-aggregation. Also, high resolution TEM of the tubes reveals that they can be composed of several tapes while powder X-ray diffraction revealed the lamellar structure of the tapes composing the tubes.

摘要

一种五并苯衍生物的纳米管,即 6,13-双(1-正十二烷基)-[a,c,l,n]-四苯并-5,6,7,12,13,14-六氮杂戊搭烯,通过分层自组装机制制备而成。这些寡氮杂并苯 1-3 被称为吡嗪并苯,因为它们的线性融合吡嗪杂环结构,也可以被视为通过一个减少的吡嗪环融合的两个氮杂三联苯。将 6,13-双(1-正十二烷基)-[a,c,l,n]-四苯并-5,6,7,12,13,14-六氮杂戊搭烯溶解在近乎沸腾的甲苯中,然后将溶液在室温下静置,会产生自组装(sa)吡嗪并苯(Pa)纳米管(NT's),或 sa-PaNTs。自组装-PaNTs 是在吡嗪并苯最初聚集后形成的,形成一个 130nm 宽的 2 维带,然后这个带通过螺旋扭曲成一个 150-200nm 直径的空心圆柱形,其长度可以超过 10μm。使用扫描电子显微镜(SEM)、透射电子显微镜(TEM)、粉末 X 射线衍射(XRD)和电子吸收光谱(UV/Vis)研究了带和纳米管结构的形态。后者表明,这些管可能是由发色团 J-聚集形成的。此外,管的高分辨率 TEM 显示它们可以由几个带组成,而粉末 X 射线衍射显示了组成管的带的层状结构。

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