TY - JOUR
T1 - Ortho-Substituted Aryldiazonium Design for the Defect Configuration-Controlled Photoluminescent Functionalization of Chiral Single-Walled Carbon Nanotubes
AU - Yu, Boda
AU - Naka, Sadahito
AU - Aoki, Haruka
AU - Kato, Koichiro
AU - Yamashita, Daiki
AU - Fujii, Shun
AU - Kato, Yuichiro K.
AU - Fujigaya, Tsuyohiko
AU - Shiraki, Tomohiro
N1 - Funding Information:
This work was supported by Grants-in-Aid for JSPS KAKENHI grant numbers JP22H01910 and JP19H02557 for T.S., JP20H02558 for Y.K.K., JP20J00817 and JP22K14624 for D.Y., and JP22K14625 for S.F, a Research Grant from Kyushu University for T.S., and the Nanotechnology Platform Project for T.F., from the Ministry of Education, Culture, Sports, Science, and Technology, Japan. S.F. is supported by RIKEN Special Postdoctoral Researcher Program. We thank Dr. Daichi Kozawa (RIKEN, Japan) for discussion regarding PL data.
Publisher Copyright:
©
PY - 2022
Y1 - 2022
N2 - Defect functionalization of single-walled carbon nanotubes (SWCNTs) by chemical modification is a promising strategy for near-infrared photoluminescence (NIR PL) generation at >1000 nm, which has advanced telecom and bio/medical applications. The covalent attachment of molecular reagents generates sp3-carbon defects in the sp2-carbon lattice of SWCNTs with bright red-shifted PL generation. Although the positional difference between proximal sp3-carbon defects, labeled as the defect binding configuration, can dominate NIR PL properties, the defect arrangement chemistry remains unexplored. Here, aryldiazonium reagents with conjugated ortho-substituents (phenyl and acetylene groups) were developed to introduce molecular interactions with nanotube sidewalls into the defect-formation chemical reaction. The functionalized chiral SWCNTs selectively emitted single defect PL in the wavelength range of 1230-1270 nm for (6,5) tubes, indicating the formation of an atypical binding configuration, different from those exhibited by typical aryl- or alkyl-functionalized chiral tubes emitting 1150 nm PL. Moreover, the acetylene-based substituent design enabled PL brightening and a subsequent molecular modification of the doped sites using click chemistry.
AB - Defect functionalization of single-walled carbon nanotubes (SWCNTs) by chemical modification is a promising strategy for near-infrared photoluminescence (NIR PL) generation at >1000 nm, which has advanced telecom and bio/medical applications. The covalent attachment of molecular reagents generates sp3-carbon defects in the sp2-carbon lattice of SWCNTs with bright red-shifted PL generation. Although the positional difference between proximal sp3-carbon defects, labeled as the defect binding configuration, can dominate NIR PL properties, the defect arrangement chemistry remains unexplored. Here, aryldiazonium reagents with conjugated ortho-substituents (phenyl and acetylene groups) were developed to introduce molecular interactions with nanotube sidewalls into the defect-formation chemical reaction. The functionalized chiral SWCNTs selectively emitted single defect PL in the wavelength range of 1230-1270 nm for (6,5) tubes, indicating the formation of an atypical binding configuration, different from those exhibited by typical aryl- or alkyl-functionalized chiral tubes emitting 1150 nm PL. Moreover, the acetylene-based substituent design enabled PL brightening and a subsequent molecular modification of the doped sites using click chemistry.
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U2 - 10.1021/acsnano.2c09897
DO - 10.1021/acsnano.2c09897
M3 - Article
C2 - 36384293
AN - SCOPUS:85142615682
SN - 1936-0851
JO - ACS Nano
JF - ACS Nano
ER -