Photoluminescence Properties of Single‐Walled Carbon Nanotubes Influenced by the Tether Length of Reagents with Two Reactive Sites

Author:

Konno Yui1ORCID,Morooka Rina1,Morishita Tatsunari1,Zhao Pei2ORCID,Miyasaka Naoto1,Ono Kazuki1,Noda Akira1,Uchida Daiki1,Iwasaki Ren1,Yamada Michio1ORCID,Ehara Masahiro2ORCID,Maeda Yutaka1ORCID

Affiliation:

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

2. Research Center for Computational Science, Institute for Molecular Science Okazaki 444-8585 Japan

Abstract

AbstractThe functionalization of single‐walled carbon nanotubes (SWNTs) is an effective method for controlling a local band gap, resulting in photoluminescence (PL) in the near‐infrared region. Herein, SWNTs were functionalized using a series of bromoalkanes and dibromoalkanes to evaluate the effects of their length on the nanotube PL properties. When bromoalkanes (CnH2n+1Br) or dibromoalkanes (CnH2nBr2) with tether lengths of six or more were utilized for six different semiconducting SWNTs, the obtained SWNT adducts exhibited two new PL peaks, whereas dibromoalkanes with tether lengths of 3–5 (CnH2nBr2: n=3–5) produced single peaks. Combined with theoretical calculations, the results suggested that the tether length of reagents changes the formation mechanism of functionalized adducts, that is, CnH2nBr2 (n=3–5) tends to result in kinetic products.

Funder

Japan Society for the Promotion of Science

Publisher

Wiley

Subject

General Chemistry,Catalysis,Organic Chemistry

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