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单壁碳纳米管的逐步功能化及其随后的分子转化以控制光致发光特性。

Stepwise Functionalization of Single-Walled Carbon Nanotubes with Subsequent Molecular Conversion to Control Photoluminescence Properties.

作者信息

Konno Yui, Yamada Michio, Suzuki Mitsuaki, Maeda Yutaka

机构信息

Division of Mathematics and Natural Science Education, The United Graduate School of Education, Tokyo Gakugei University, 184-8501, Tokyo, Japan.

Department of Chemistry, Tokyo Gakugei University, 184-8501, Tokyo, Japan.

出版信息

Chemistry. 2023 Sep 12;29(51):e202301707. doi: 10.1002/chem.202301707. Epub 2023 Aug 4.

Abstract

Functionalization of single-walled carbon nanotubes (SWCNTs) has attracted interest because it alters the near-infrared (NIR) photoluminescence (PL) wavelength and emission efficiency. These modifications depend on the binding configuration and degree of functionalization. Excessive functionalization reduces the emission efficiency as the integrity of the conjugated π system decreases; thus, controlling the degree of functionalization is essential. Because the binding configurations and degree of functionalization are affected by the reagent structure, a stepwise approach combining SWCNTs functionalization and subsequent reactions to introduce functional groups into the addenda could effectively control their PL properties and functionalities. We studied this approach by implementing the reductive alkylation of SWCNTs by using bromoalkanes with t-butyl carbamate (Boc)-protected amino groups and subsequent deprotection and amidation reactions. The reaction products were analyzed based on absorption, PL, and Raman spectroscopy and the Kaiser test. Depending on the structure of the reagent, deprotection and amidation reactions competed with the elimination reaction of addenda, altering the PL properties of the SWCNTs. Furthermore, the elimination reaction was inhibited in the adducts functionalized using dibromoalkane with Boc-protected amino groups, demonstrating that the use of appropriate reagents enables the molecular conversion of the functional groups of SWCNT adducts without affecting their PL properties.

摘要

单壁碳纳米管(SWCNTs)的功能化引起了人们的兴趣,因为它会改变近红外(NIR)光致发光(PL)波长和发射效率。这些修饰取决于结合构型和功能化程度。过度功能化会降低发射效率,因为共轭π体系的完整性降低;因此,控制功能化程度至关重要。由于结合构型和功能化程度受试剂结构影响,将SWCNTs功能化与后续反应相结合的分步方法,即将官能团引入添加剂中,可以有效地控制其PL性质和功能。我们通过使用带有叔丁基氨基甲酸酯(Boc)保护氨基的溴代烷烃对SWCNTs进行还原烷基化反应,以及随后的脱保护和酰胺化反应来研究这种方法。基于吸收、PL和拉曼光谱以及凯氏试验对反应产物进行了分析。根据试剂的结构,脱保护和酰胺化反应与添加剂的消除反应相互竞争,从而改变了SWCNTs的PL性质。此外,在使用带有Boc保护氨基的二溴代烷烃功能化的加合物中,消除反应受到抑制,这表明使用合适的试剂能够实现SWCNT加合物官能团的分子转化,而不会影响其PL性质。

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