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Synthesis of a magnetic π-extended carbon nanosolenoid with Riemann surfaces.


ABSTRACT: Riemann surfaces are deformed versions of the complex plane in mathematics. Locally they look like patches of the complex plane, but globally, the topology may deviate from a plane. Nanostructured graphitic carbon materials resembling a Riemann surface with helicoid topology are predicted to have interesting electronic and photonic properties. However, fabrication of such processable and large π-extended nanographene systems has remained a major challenge. Here, we report a bottom-up synthesis of a metal-free carbon nanosolenoid (CNS) material with a low optical bandgap of 1.97 eV. The synthesis procedure is rapid and possible on the gram scale. The helical molecular structure of CNS can be observed by direct low-dose high-resolution imaging, using integrated differential phase contrast scanning transmission electron microscopy. Magnetic susceptibility measurements show paramagnetism with a high spin density for CNS. Such a π-conjugated CNS allows for the detailed study of its physical properties and may form the base of the development of electronic and spintronic devices containing CNS species.

SUBMITTER: Wang J 

PROVIDER: S-EPMC8907333 | biostudies-literature | 2022 Mar

REPOSITORIES: biostudies-literature

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Synthesis of a magnetic π-extended carbon nanosolenoid with Riemann surfaces.

Wang Jinyi J   Zhu Yihan Y   Zhuang Guilin G   Wu Yayu Y   Wang Shengda S   Huang Pingsen P   Sheng Guan G   Chen Muqing M   Yang Shangfeng S   Greber Thomas T   Du Pingwu P  

Nature communications 20220309 1


Riemann surfaces are deformed versions of the complex plane in mathematics. Locally they look like patches of the complex plane, but globally, the topology may deviate from a plane. Nanostructured graphitic carbon materials resembling a Riemann surface with helicoid topology are predicted to have interesting electronic and photonic properties. However, fabrication of such processable and large π-extended nanographene systems has remained a major challenge. Here, we report a bottom-up synthesis o  ...[more]

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