Floatable photocatalytic hydrogel nanocomposites for large-scale solar hydrogen production

被引:0
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作者
Wang Hee Lee
Chan Woo Lee
Gi Doo Cha
Byoung-Hoon Lee
Jae Hwan Jeong
Hyunseo Park
Junhyeok Heo
Megalamane S. Bootharaju
Sung-Hyuk Sunwoo
Jeong Hyun Kim
Kyung Hyun Ahn
Dae-Hyeong Kim
Taeghwan Hyeon
机构
[1] Center for Nanoparticle Research,School of Chemical and Biological Engineering, and Institute of Chemical Processes
[2] Institute for Basic Science (IBS),Department of Materials Science and Engineering
[3] Seoul National University,undefined
[4] Seoul National University,undefined
来源
Nature Nanotechnology | 2023年 / 18卷
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摘要
Storing solar energy in chemical bonds aided by heterogeneous photocatalysis is desirable for sustainable energy conversion. Despite recent progress in designing highly active photocatalysts, inefficient solar energy and mass transfer, the instability of catalysts and reverse reactions impede their practical large-scale applications. Here we tackle these challenges by designing a floatable photocatalytic platform constructed from porous elastomer–hydrogel nanocomposites. The nanocomposites at the air–water interface feature efficient light delivery, facile supply of water and instantaneous gas separation. Consequently, a high hydrogen evolution rate of 163 mmol h–1 m–2 can be achieved using Pt/TiO2 cryoaerogel, even without forced convection. When fabricated in an area of 1 m2 and incorporated with economically feasible single-atom Cu/TiO2 photocatalysts, the nanocomposites produce 79.2 ml of hydrogen per day under natural sunlight. Furthermore, long-term stable hydrogen production in seawater and highly turbid water and photoreforming of polyethylene terephthalate demonstrate the potential of the nanocomposites as a commercially viable photocatalytic system.
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页码:754 / 762
页数:8
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