Enhancement of hydrogen evolution reaction performance of 3D pyrolytic carbon derived from 3D printing
Enhancement of hydrogen evolution reaction performance of 3D pyrolytic carbon derived from 3D printing
Meethale Palakkool, Nadira
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Taverne, Mike P.C.
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Barrioz, Vincent
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Qu, Yongtao
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Huang, Kevin Chung-Che
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Ho, Y.-L. Daniel
945e3431-b334-4d98-858f-c3fae452640f
8 July 2024
Meethale Palakkool, Nadira
7ff30e79-5012-4cac-96b3-ec461fc65023
Taverne, Mike P.C.
6444e2cd-5d52-43a7-83b6-2e72f922501d
Barrioz, Vincent
56edf13a-1bed-4e5b-bc03-2c7de8426d15
Qu, Yongtao
943c307c-14c3-4ae0-bb11-246983cd5667
Huang, Kevin Chung-Che
825f7447-6d02-48f6-b95a-fa33da71f106
Ho, Y.-L. Daniel
945e3431-b334-4d98-858f-c3fae452640f
Meethale Palakkool, Nadira, Taverne, Mike P.C., Barrioz, Vincent, Qu, Yongtao, Huang, Kevin Chung-Che and Ho, Y.-L. Daniel
(2024)
Enhancement of hydrogen evolution reaction performance of 3D pyrolytic carbon derived from 3D printing.
EcoMat Conference 2024: EcoMat 2024, Hilton Gateshead, Newcastle upon Tyne, United Kingdom.
08 - 10 Jul 2024.
Record type:
Conference or Workshop Item
(Poster)
Text
EcoMat 2024 Abstract_Nadira Meethale Palakkool
- Accepted Manuscript
More information
Published date: 8 July 2024
Venue - Dates:
EcoMat Conference 2024: EcoMat 2024, Hilton Gateshead, Newcastle upon Tyne, United Kingdom, 2024-07-08 - 2024-07-10
Identifiers
Local EPrints ID: 491711
URI: http://eprints.soton.ac.uk/id/eprint/491711
PURE UUID: 52ba6fad-2504-440b-91f2-c47fa56887ec
Catalogue record
Date deposited: 03 Jul 2024 16:22
Last modified: 12 Jul 2024 01:43
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Contributors
Author:
Nadira Meethale Palakkool
Author:
Mike P.C. Taverne
Author:
Vincent Barrioz
Author:
Yongtao Qu
Author:
Kevin Chung-Che Huang
Author:
Y.-L. Daniel Ho
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