Avalanche charge generation in anhydrous glucosides excited by an external electric field

Glycolipids are components of cellular membranes comprising a hydrophobic lipid tail and one or more hydrophilic sugar heads, and are widely associated with the fields of life science and biochemistry. Due to the hygroscopic nature of sugar, the dry thermotropic phases of glycolipids have fewer stud...

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Main Authors: Sugimura, Akihiko, Iwamoto, Mitsumasa, Hashim, Rauzah
Format: Article
Published: American Institute of Physics 2019
Subjects:
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author Sugimura, Akihiko
Iwamoto, Mitsumasa
Hashim, Rauzah
author_facet Sugimura, Akihiko
Iwamoto, Mitsumasa
Hashim, Rauzah
author_sort Sugimura, Akihiko
collection UM
description Glycolipids are components of cellular membranes comprising a hydrophobic lipid tail and one or more hydrophilic sugar heads, and are widely associated with the fields of life science and biochemistry. Due to the hygroscopic nature of sugar, the dry thermotropic phases of glycolipids have fewer studies. We report on the electric charge generation in anhydrous glucosides excited by the external high electric field (∼2 MV/m). This causes a large current in the smectic A phase, but not in the isotropic phase. Its intensity is about 100 times larger than the steady state current. The generation of the current was found to be irreversible by the repetition of the field application. The large electric carrier generation is originated in the smectic A phase, possibly due to an electron avalanche breakdown mechanism caused by the collisions of electrons through the impact ionization. © 2019 Author(s).
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spelling um.eprints-233772020-01-09T04:51:40Z http://eprints.um.edu.my/23377/ Avalanche charge generation in anhydrous glucosides excited by an external electric field Sugimura, Akihiko Iwamoto, Mitsumasa Hashim, Rauzah Q Science (General) QD Chemistry Glycolipids are components of cellular membranes comprising a hydrophobic lipid tail and one or more hydrophilic sugar heads, and are widely associated with the fields of life science and biochemistry. Due to the hygroscopic nature of sugar, the dry thermotropic phases of glycolipids have fewer studies. We report on the electric charge generation in anhydrous glucosides excited by the external high electric field (∼2 MV/m). This causes a large current in the smectic A phase, but not in the isotropic phase. Its intensity is about 100 times larger than the steady state current. The generation of the current was found to be irreversible by the repetition of the field application. The large electric carrier generation is originated in the smectic A phase, possibly due to an electron avalanche breakdown mechanism caused by the collisions of electrons through the impact ionization. © 2019 Author(s). American Institute of Physics 2019 Article PeerReviewed Sugimura, Akihiko and Iwamoto, Mitsumasa and Hashim, Rauzah (2019) Avalanche charge generation in anhydrous glucosides excited by an external electric field. AIP Advances, 9 (12). p. 125015. ISSN 2158-3226, DOI https://doi.org/10.1063/1.5109126 <https://doi.org/10.1063/1.5109126>. https://doi.org/10.1063/1.5109126 doi:10.1063/1.5109126
spellingShingle Q Science (General)
QD Chemistry
Sugimura, Akihiko
Iwamoto, Mitsumasa
Hashim, Rauzah
Avalanche charge generation in anhydrous glucosides excited by an external electric field
title Avalanche charge generation in anhydrous glucosides excited by an external electric field
title_full Avalanche charge generation in anhydrous glucosides excited by an external electric field
title_fullStr Avalanche charge generation in anhydrous glucosides excited by an external electric field
title_full_unstemmed Avalanche charge generation in anhydrous glucosides excited by an external electric field
title_short Avalanche charge generation in anhydrous glucosides excited by an external electric field
title_sort avalanche charge generation in anhydrous glucosides excited by an external electric field
topic Q Science (General)
QD Chemistry
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AT iwamotomitsumasa avalanchechargegenerationinanhydrousglucosidesexcitedbyanexternalelectricfield
AT hashimrauzah avalanchechargegenerationinanhydrousglucosidesexcitedbyanexternalelectricfield