Investigation of the electrochemical intercalation of Ca2+ into graphite layer carbon nano filaments as a novel electrode material for calcium-ion batteries

Article Highlights Marimo nano carbon, an aggregate of carbon nanofilaments, was shown to intercalate Ca2+ or solvated Ca2+. The graphite structure of carbon nanofilaments was developed via heat treatment. The strength of interaction with solvent molecules differed depending on the Ca salt. Marimo n...

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Main Authors: Yuichiro Nishimura, Shuzo Yamazaki, Takahiro Sakoda, Kiyoharu Nakagawa
Format: Article
Language:English
Published: Springer 2023-01-01
Series:SN Applied Sciences
Subjects:
Online Access:https://doi.org/10.1007/s42452-023-05275-1
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author Yuichiro Nishimura
Shuzo Yamazaki
Takahiro Sakoda
Kiyoharu Nakagawa
author_facet Yuichiro Nishimura
Shuzo Yamazaki
Takahiro Sakoda
Kiyoharu Nakagawa
author_sort Yuichiro Nishimura
collection DOAJ
description Article Highlights Marimo nano carbon, an aggregate of carbon nanofilaments, was shown to intercalate Ca2+ or solvated Ca2+. The graphite structure of carbon nanofilaments was developed via heat treatment. The strength of interaction with solvent molecules differed depending on the Ca salt. Marimo nano carbon exhibited higher charge/discharge capacity than natural graphite.
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spelling doaj.art-5456b0ae66544605bcefa0c72a65443e2023-01-22T12:21:38ZengSpringerSN Applied Sciences2523-39632523-39712023-01-015211010.1007/s42452-023-05275-1Investigation of the electrochemical intercalation of Ca2+ into graphite layer carbon nano filaments as a novel electrode material for calcium-ion batteriesYuichiro Nishimura0Shuzo Yamazaki1Takahiro Sakoda2Kiyoharu Nakagawa3Department of Chemical, Energy and Environmental Engineering, Kansai UniversityDepartment of Chemical, Energy and Environmental Engineering, Kansai UniversityToyo Tanso Co., Ltd.Department of Chemical, Energy and Environmental Engineering, Kansai UniversityArticle Highlights Marimo nano carbon, an aggregate of carbon nanofilaments, was shown to intercalate Ca2+ or solvated Ca2+. The graphite structure of carbon nanofilaments was developed via heat treatment. The strength of interaction with solvent molecules differed depending on the Ca salt. Marimo nano carbon exhibited higher charge/discharge capacity than natural graphite.https://doi.org/10.1007/s42452-023-05275-1Calcium-ion batteryCarbon nanofilamentElectrochemical intercalationHeat treatmentMarimo nano carbon
spellingShingle Yuichiro Nishimura
Shuzo Yamazaki
Takahiro Sakoda
Kiyoharu Nakagawa
Investigation of the electrochemical intercalation of Ca2+ into graphite layer carbon nano filaments as a novel electrode material for calcium-ion batteries
SN Applied Sciences
Calcium-ion battery
Carbon nanofilament
Electrochemical intercalation
Heat treatment
Marimo nano carbon
title Investigation of the electrochemical intercalation of Ca2+ into graphite layer carbon nano filaments as a novel electrode material for calcium-ion batteries
title_full Investigation of the electrochemical intercalation of Ca2+ into graphite layer carbon nano filaments as a novel electrode material for calcium-ion batteries
title_fullStr Investigation of the electrochemical intercalation of Ca2+ into graphite layer carbon nano filaments as a novel electrode material for calcium-ion batteries
title_full_unstemmed Investigation of the electrochemical intercalation of Ca2+ into graphite layer carbon nano filaments as a novel electrode material for calcium-ion batteries
title_short Investigation of the electrochemical intercalation of Ca2+ into graphite layer carbon nano filaments as a novel electrode material for calcium-ion batteries
title_sort investigation of the electrochemical intercalation of ca2 into graphite layer carbon nano filaments as a novel electrode material for calcium ion batteries
topic Calcium-ion battery
Carbon nanofilament
Electrochemical intercalation
Heat treatment
Marimo nano carbon
url https://doi.org/10.1007/s42452-023-05275-1
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