Please use this identifier to cite or link to this item: http://dr.iiserpune.ac.in:8080/xmlui/handle/123456789/6361
Title: An atmospheric water electrolyzer for decentralized green hydrogen production
Authors: THIMMAPPA, RAVIKUMAR
GAUTAM, MANU
BHAT, ZAHID M.
THODIKA, ABDUL RAAFIK ARATTU
DEVENDRACHARI, MRUTHUNJAYACHARI C.
MUKHOPADHYAY, SANCHAYITA
DARGILY, NEETHU CHRISTUDAS
THOTIYL, MUSTHAFA OTTAKAM
Dept. of Chemistry
Keywords: Atmospheric water electrolyzer
Proton exchange membrane
Graphene oxide membrane
Proton conductivity
2021-OCT-WEEK3
TOC-OCT-2021
2021
Issue Date: Nov-2021
Publisher: Elsevier B.V.
Citation: Cell Reports Physical Science, 2(11), 100627.
Abstract: The necessity of ultrapure water and water-transport infrastructure pose grand challenges in renewable-energy-assisted water electrolysis to produce green hydrogen. Directly accessing atmospheric water should offer a decisive solution because it provides ∼13 trillion kiloliters of pure water at any given instant. We show that the central challenge for atmospheric water electrolysis is related to the water-sorption kinetics of the proton-conducting membrane where state-of-the-art membranes critically fail. A proof-of-concept atmospheric water electrolyzer is demonstrated with a graphene oxide proton-conducting membrane, which has nearly three times higher water-sorption kinetics and ten times higher hydration number than a Nafion membrane due to capillary water condensation and the abundant presence of hydrophilic functionalities. At a wind velocity of ∼50 km/h, this electrolyzer delivers nearly 18 mL/h/cm2 of green hydrogen directly from the feedstock of atmospheric water. Because this electrolyzer does not require water-transport infrastructure, it can be placed almost anywhere, which offers opportunities for decentralized green hydrogen production.
URI: https://doi.org/10.1016/j.xcrp.2021.100627
http://dr.iiserpune.ac.in:8080/xmlui/handle/123456789/6361
ISSN: 2666-3864
Appears in Collections:JOURNAL ARTICLES

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