arrow
Return

Moisture Power Generation: From Material Selection to Device Structure Optimization

delete2024-07-25
delete3
PRE
AI
S
Shuo Zang
J
Junbo Chen
Y
YamauchiYusuke (Yusuke Yamauchi)
S
Swellam W. Sharshir
H
Hongqiang Huang
J
Juhua Yun
王力伟 cover
王力伟 (Liwei Wang) *
王冲 cover
王冲 (Chong Wang)
X
Xiangfeng Lin *
S
Saad Melhi
M
Minjun Kim *
Z
Zhanhui Yuan *
DOI:10.1021/acsnano.4c01416delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
Moisture power generation (MPG) technology, producing clean and sustainable energy from a humid environment, has drawn significant attention and research efforts in recent years as a means of easing the energy crisis. Despite the rapid progress, MPG technology still faces numerous challenges with the most significant one being the low power-generating performance of individual MPG devices. In this review, we introduce the background and underlying principles of MPG technology while thoroughly explaining how the selection of suitable materials (carbons, polymers, inorganic salts, etc.) and the optimization of the device structure (pore structure, moisture gradient structure, functional group gradient structure, and electrode structure) can address the existing and anticipated challenges. Furthermore, this review highlights the major scientific and engineering hurdles on the way to advancing MPG technology and offers potential insights for the development of high-performance MPG systems.
Keywords:
moisture
moisture power generator
materialsand structures
pore structure
moisture gradient
functional group gradient
electrode
ion diffusion
streaming potential

Journal

ACS Nano cover
ACS Nano
IF:
16
Papers:
2.6W
Citations:
25.6W

Organization

K
Kafrelsheikh University
Scholars:
3.0K
Papers: 2.7K
Citations: 66
N
Nagoya University
Scholars:
3.3W
Papers: 2.5W
Citations: 2.6W
U
University of Queensland
Scholars:
5.0W
Papers: 5.1W
Citations: 9.2W
researcher View more organizations