Bicyclic-ring base doping induces n-type conduction in carbon nanotubes with outstanding thermal stability in air

Author:

Horike ShoheiORCID,Wei QingshuoORCID,Akaike KoukiORCID,Kirihara Kazuhiro,Mukaida Masakazu,Koshiba YasukoORCID,Ishida KenjiORCID

Abstract

AbstractThe preparation of air and thermally stable n-type carbon nanotubes is desirable for their further implementation in electronic and energy devices that rely on both p- and n-type material. Here, a series of guanidine and amidine bases with bicyclic-ring structures are used as n-doping reagents. Aided by their rigid alkyl functionality and stable conjugate acid structure, these organic superbases can easily reduce carbon nanotubes. n-Type nanotubes doped with guanidine bases show excellent thermal stability in air, lasting for more than 6 months at 100 °C. As an example of energy device, a thermoelectric p/n junction module is constructed with a power output of ca. 4.7 μW from a temperature difference of 40 °C.

Funder

MEXT | JST | Precursory Research for Embryonic Science and Technology

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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