Sökning: WFRF:(Neville Matt)
> (2020-2021)
> RISE >
Lignin-derived elec...
Lignin-derived electrospun freestanding carbons as alternative electrodes for redox flow batteries
-
- Ribadeneyra, Maria (författare)
- Queen Mary University of London, UK
-
- Grogan, Lia (författare)
- Trinity College Dublin, Ireland
-
- Au, Heather (författare)
- Imperial College London, UK
-
visa fler...
-
- Schlee, Philipp (författare)
- Queen Mary University of London, UK; Imperial College London, UK
-
- Herou, Servann (författare)
- Queen Mary University of London, UK; Imperial College London, UK
-
- Neville, Tobias (författare)
- University College London, UK
-
- Cullen, Patrick (författare)
- University College London, UK
-
- Kok, Matt (författare)
- University College London, UK
-
- Hosseinaei, Omid (författare)
- RISE,Bioraffinaderi och energi
-
- Danielsson, Sverker (författare)
- RISE,Bioekonomi och hälsa
-
- Tomani, Per (författare)
- RISE,Bioraffinaderi och energi
-
- Titirici, M. M. (författare)
- Imperial College London, UK
-
- Brett, Daniel (författare)
- University College London, UK
-
- Shearing, Paul (författare)
- University College London, UK
-
- Jervis, Rhodri (författare)
- University College London, UK
-
- Jorge, Ana (författare)
- Queen Mary University of London, UK;
-
visa färre...
-
(creator_code:org_t)
- Elsevier Ltd, 2020
- 2020
- Engelska.
-
Ingår i: Carbon. - : Elsevier Ltd. - 0008-6223 .- 1873-3891. ; 157, s. 847-856
- Relaterad länk:
-
https://qmro.qmul.ac...
-
visa fler...
-
https://urn.kb.se/re...
-
https://doi.org/10.1...
-
visa färre...
Abstract
Ämnesord
Stäng
- Redox flow batteries represent a remarkable alternative for grid-scale energy storage. They commonly employ carbon felts or carbon papers, which suffer from low activity towards the redox reactions involved, leading to poor performance. Here we propose the use of electrospun freestanding carbon materials derived from lignin as alternative sustainable electrodes for all-vanadium flow batteries. The lignin-derived carbon electrospun mats exhibited a higher activity towards the VO2 +/VO2+ reaction than commercial carbon papers when tested in a three-electrode electrochemical cell (or half-cell), which we attribute to the higher surface area and higher amount of oxygen functional groups at the surface. The electrospun carbon electrodes also showed performance comparable to commercial carbon papers, when tested in a full cell configuration. The modification of the surface chemistry with the addition of phosphorous produced different effect in both samples, which needs further investigation. This work demonstrates for the first time the application of sustainably produced electrospun lignin-derived carbon electrodes in a redox flow cell, with comparable performance to commercial materials and establishes the great potential of biomass-derived carbons in energy devices.
Nyckelord
- Bio-sustainable carbons
- Carbon electrodes
- Energy conversion
- Redox-flow batteries
- vanadium electrochemistry
- Carbon
- Electrochemical electrodes
- Lignin
- Paper
- Redox reactions
- Surface chemistry
- Vanadium dioxide
- Carbon electrode
- Cell configurations
- Commercial materials
- Derived carbons
- Different effects
- Electrospun mats
- Oxygen functional groups
- Poor performance
- Flow batteries
Publikations- och innehållstyp
- ref (ämneskategori)
- art (ämneskategori)
Hitta via bibliotek
-
Carbon
(Sök värdpublikationen i LIBRIS)
Till lärosätets databas
- Av författaren/redakt...
-
Ribadeneyra, Mar ...
-
Grogan, Lia
-
Au, Heather
-
Schlee, Philipp
-
Herou, Servann
-
Neville, Tobias
-
visa fler...
-
Cullen, Patrick
-
Kok, Matt
-
Hosseinaei, Omid
-
Danielsson, Sver ...
-
Tomani, Per
-
Titirici, M. M.
-
Brett, Daniel
-
Shearing, Paul
-
Jervis, Rhodri
-
Jorge, Ana
-
visa färre...
- Artiklar i publikationen
-
Carbon
- Av lärosätet
-
RISE