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Masahiro Tomioka
ResearcherPublications, citations & collaboration network
Masahiro Tomioka is a researcher indexed in ScholarIQ from OpenAlex & ORCID. ScholarIQ records 22 works, 213 citations, an h-index of 8 and an i10-index of 8.
22
Works
213
Citations
8
h-index
8
i10-index
IDs:OpenAlex
How has Masahiro Tomioka's publication output changed over time?
ScholarIQpublication output · 1966–2023
Output grew0% over the shown period — from 1 works in 1966 to 1 in 2023.
1
1
1
1
2
4
1
1966201220192020202120222023
What are the most-cited papers on Masahiro Tomioka?
ScholarIQmost cited works
Effect of Ball Milling on the Electrochemical Performance of Activated Carbon with a Very High Specific Surface Area
Takuya Eguchi, Yugo Kanamoto, Masahiro Tomioka, Daisuke Tashima, Seiji Kumagai
S2737090608. 202039 CitationsOPEN ACCESS
Lithium-ion capacitor using rice husk-derived cathode and anode active materials adapted to uncontrolled full-pre-lithiation
Seiji Kumagai, Yusuke Abe, T. Saito, Takuya Eguchi, Masahiro Tomioka, Mahmudul Kabir, Daisuke Tashima
S177147899. 201935 Citations
Role of SiOx in rice-husk-derived anodes for Li-ion batteries
Yusuke Abe, Masahiro Tomioka, Mahmudul Kabir, Seiji Kumagai
Scientific Reports. 202234 CitationsOPEN ACCESS
Studies on Polyamides Prepared in the Solid State
Seigo Oya, Masahiro Tomioka, Tadaaki Araki
Kobunshi Kagaku. 196625 CitationsOPEN ACCESS
Energy density maximization of Li-ion capacitor using highly porous activated carbon cathode and micrometer-sized Si anode
Takuya Eguchi, Keiichiro Sawada, Masahiro Tomioka, Seiji Kumagai
S198339081. 202121 CitationsOPEN ACCESS
Related on ScholarIQ
Akita University
Institution
Effect of Ball Milling on the Electrochemical Performance of Activated Carbon with a Very High Specific Surface Area
Paper
Lithium-ion capacitor using rice husk-derived cathode and anode active materials adapted to uncontrolled full-pre-lithiation
Paper
Role of SiOx in rice-husk-derived anodes for Li-ion batteries
Paper
Studies on Polyamides Prepared in the Solid State
Paper
Energy density maximization of Li-ion capacitor using highly porous activated carbon cathode and micrometer-sized Si anode
Paper