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自组装富勒烯羧酸盐的结构研究:单加合物与双加合物

Structural study of the self-assembled fullerene carboxylates: monoadducts versus bisadducts.

作者信息

Zhou Shuiqin, Ouyang Jianying, Golas Patricia, Wang Feng, Pan Yi

机构信息

Department of Chemistry of The College of Staten Island, Institute of Macromolecular Assembly, Staten Island, New York 10314, USA. zhoush@ mail.csi.cuny.edu

出版信息

J Phys Chem B. 2005 Oct 27;109(42):19741-7. doi: 10.1021/jp053978x.

Abstract

Laser light scattering and transmission electronic microscopy have been used to study the self-assembled structures of mono- and bisadducts of fullerene carboxylic acids in tetrahydrofuran (THF) and their sodium salts in aqueous solutions, respectively. In THF, the self-association of monoadducts of fullerene carboxylic acid (MFCA) produces large but narrowly distributed particles with R(h) approximately 145 nm. The self-aggregates from the bisadducts of fullerene carboxylic acid (BFCA) in THF are relatively small in size (R(h) approximately 80 nm) due to the better solubility. After the ionization of carboxylic acid groups on the C(60) cage in dilute NaOH solutions, these aggregates dissolved and reorganized. The self-assembly of the monoadducts of sodium carboxylate fullerenes (MSCF) produces small solid spherical particles with R(h) approximately 32 nm. The ratio of R(g)/R(h) approximately 0.83 indicates that the particles have a nearly uniform density. The increase in concentrations leads to strong interparticle associations to form rodlike and irregularly shaped large aggregates. In contrast, the self-assembly of bisadducts of sodium carboxylate fullerenes (BSCF) results in hollow shells with mainly two different size scales of R(h) approximately 23 nm and R(h) approximately 104 nm. At high concentrations, the hollow shells associate and melt together to generate three-dimensional networks.

摘要

激光光散射和透射电子显微镜已分别用于研究富勒烯羧酸的单加合物和双加合物在四氢呋喃(THF)中的自组装结构以及它们的钠盐在水溶液中的自组装结构。在THF中,富勒烯羧酸单加合物(MFCA)的自缔合产生大但分布窄的颗粒,其流体力学半径(R(h))约为145 nm。由于溶解性较好,富勒烯羧酸双加合物(BFCA)在THF中的自聚集体尺寸相对较小(R(h)约为80 nm)。在稀NaOH溶液中C(60)笼上的羧酸基团电离后,这些聚集体溶解并重新组织。羧酸钠富勒烯单加合物(MSCF)的自组装产生流体力学半径(R(h))约为32 nm的小实心球形颗粒。R(g)/R(h)约为0.83的比值表明颗粒具有近乎均匀的密度。浓度增加导致颗粒间强烈缔合形成棒状和不规则形状的大聚集体。相比之下,羧酸钠富勒烯双加合物(BSCF)的自组装产生主要具有两种不同尺寸尺度的中空壳,流体力学半径(R(h))约为23 nm和R(h)约为104 nm。在高浓度下,中空壳缔合并融合在一起形成三维网络。

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