Mobility of long-lived fullerene radical in solid state and nonlinear temperature dependence. 2014

Yoko Abe, and Hideyuki Tanaka, and Yunlong Guo, and Yutaka Matsuo, and Eiichi Nakamura
Department of Chemistry, The University of Tokyo , 7-3-1 Hongo, Bunkyo-ku, Tokyo 112-0033, Japan.

A singly bonded fullerene dimer [C60R]2 in the solid state thermally generates a pair of fullerene radicals C60R(•) that dissociate reversibly and irreversibly upon heating and cooling of the solid. The temperature dependence of the electron mobility of the solid shows striking nonlinearity, caused by the dissociation of a strongly interacting radical pair into two free radicals, which interact with the neighboring fullerene molecules to increase the mobility 10 times to a value of 1.5 × 10(-3) cm(2) V(-1) s(-1). The nonlinearity is due to the plastic crystalline nature of fullerene crystals.

UI MeSH Term Description Entries

Related Publications

Yoko Abe, and Hideyuki Tanaka, and Yunlong Guo, and Yutaka Matsuo, and Eiichi Nakamura
June 2015, Nanotechnology,
Yoko Abe, and Hideyuki Tanaka, and Yunlong Guo, and Yutaka Matsuo, and Eiichi Nakamura
May 1989, Physical review. B, Condensed matter,
Yoko Abe, and Hideyuki Tanaka, and Yunlong Guo, and Yutaka Matsuo, and Eiichi Nakamura
May 2021, ACS applied materials & interfaces,
Yoko Abe, and Hideyuki Tanaka, and Yunlong Guo, and Yutaka Matsuo, and Eiichi Nakamura
November 2021, Physical review letters,
Yoko Abe, and Hideyuki Tanaka, and Yunlong Guo, and Yutaka Matsuo, and Eiichi Nakamura
May 2007, Photochemical & photobiological sciences : Official journal of the European Photochemistry Association and the European Society for Photobiology,
Yoko Abe, and Hideyuki Tanaka, and Yunlong Guo, and Yutaka Matsuo, and Eiichi Nakamura
April 2021, The Journal of animal ecology,
Yoko Abe, and Hideyuki Tanaka, and Yunlong Guo, and Yutaka Matsuo, and Eiichi Nakamura
December 2017, The journal of physical chemistry letters,
Yoko Abe, and Hideyuki Tanaka, and Yunlong Guo, and Yutaka Matsuo, and Eiichi Nakamura
June 2024, Micron (Oxford, England : 1993),
Yoko Abe, and Hideyuki Tanaka, and Yunlong Guo, and Yutaka Matsuo, and Eiichi Nakamura
November 1993, Physical review. B, Condensed matter,
Yoko Abe, and Hideyuki Tanaka, and Yunlong Guo, and Yutaka Matsuo, and Eiichi Nakamura
December 2021, Ultrasonics,
Copied contents to your clipboard!