Department of Chemistry and Pharmacy and Institute of Advanced Materials and Processes (ZMP), University of Erlangen-Nuremberg, Henkestrasse 42, 91054 Erlangen, Germany.
J Am Chem Soc. 2011 May 25;133(20):7985-95. doi: 10.1021/ja2016872. Epub 2011 May 2.
Covalent addition reactions turned out to be one of the most important functionalization techniques for a structural alteration of single walled carbon nanotube (SWCNT) scaffolds. During the last years, several reaction sequences based on an electrophilic interception of intermediately generated SWCNT(n-) carbanions, obtained via Birch reduction or by a nucleophilic addition of organometallic species, have been developed. Nevertheless, the scope and the variety of potential electrophiles is limited due to the harsh reaction conditions requested for a covalent attachment of the functional entities onto the SWCNT framework. Herein, we present a significant modification of the reductive alkylation/arylation sequence, the so-called Billups reaction, which extends the portfolio of electrophiles for covalent sidewall functionalization to carbonyl compounds--ketones, esters, and even carboxylic acid chlorides. Moreover, these carbonyl-based electrophiles can also be used as secondary functionalization reagents for anionic SWCNT intermediates, derived from a primary nucleophilic addition step. This directly leads to the generation of mixed functional SWCNT architectures, equipped with hydroxyl or carbonyl anchor groups, suitable for ongoing derivatization reactions. A correlated absorption and emission spectroscopic study elucidates the influence of the covalent sidewall functionalization degree onto the excitonic transition features of carbon nanotubes. The characterization of the different SWCNT adducts has been carried out by means of Raman, UV-vis/nIR, and fluorescence spectroscopy as well as by thermogravimetric analysis combined with mass spectrometry and X-ray photoelectron spectroscopy analysis.
共价加成反应被证明是改变单壁碳纳米管(SWCNT)支架结构的最重要的功能化技术之一。在过去的几年中,已经开发了几种基于通过 Birch 还原或通过亲核加成有机金属物种生成的中间生成的 SWCNT(n-)碳负离子的亲电捕获的反应序列。然而,由于将官能团共价连接到 SWCNT 骨架上所需的苛刻反应条件,潜在亲电试剂的范围和种类受到限制。在此,我们提出了还原烷基化/芳基化序列(所谓的 Billups 反应)的重大改进,该反应将亲电试剂的组合扩展到用于共价侧壁功能化的羰基化合物 - 酮,酯,甚至羧酸酰氯。此外,这些基于羰基的亲电试剂也可以用作衍生自亲核加成步骤的阴离子 SWCNT 中间体的二次功能化试剂。这直接导致生成混合功能的 SWCNT 架构,其具有羟基或羰基锚定基团,适用于正在进行的衍生化反应。相关的吸收和发射光谱研究阐明了共价侧壁功能化程度对碳纳米管的激子跃迁特征的影响。通过拉曼、紫外可见/近红外、荧光光谱以及热重分析与质谱和 X 射线光电子能谱分析相结合,对不同的 SWCNT 加合物进行了表征。