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  5. Horizontal Transport in Ti3C2Tx MXene for Highly Efficient Osmotic Energy Conversion from Saline‐Alkali Environments

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Article
en
2024

Horizontal Transport in Ti3C2Tx MXene for Highly Efficient Osmotic Energy Conversion from Saline‐Alkali Environments

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en
2024
Vol 63 (48)
Vol. 63
DOI: 10.1002/anie.202414984

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Zhong Lin Wang
Zhong Lin Wang

Beijing Institute of Technology

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Qian Han
Puguang Peng
Hongzhao Fan
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Abstract

Abstract Osmotic energy from the ocean has been thoroughly studied, but that from saline‐alkali lakes is constrained by the ion‐exchange membranes due to the trade‐off between permeability and selectivity, stemming from the unfavorable structure of nanoconfined channels, pH tolerance, and chemical stability of the membranes. Inspired by the rapid water transport in xylem conduit structures, we propose a horizontal transport MXene (H‐MXene) with ionic sequential transport nanochannels, designed to endure extreme saline‐alkali conditions while enhancing ion selectivity and permeability. The H‐MXene demonstrates superior ion conductivity of 20.67 S m −1 in 1 M NaCl solution and a diffusion current density of 308 A m −2 at a 10‐fold salinity gradient of NaCl solution, significantly outperforming the conventional vertical transport MXene (V‐MXene). Both experimental and simulation studies have confirmed that H‐MXene represents a novel approach to circumventing the permeability‐selectivity trade‐off. Moreover, it exhibits efficient ion transport capabilities, addressing the gap in saline‐alkali osmotic power generation.

How to cite this publication

Qian Han, Puguang Peng, Hongzhao Fan, Zhe Yang, Lixue Yang, Yanguang Zhou, Dan Tan, Feiyao Yang, Morten Willatzen, Gehan Amaratunga, Zhong Lin Wang, Di Wei (2024). Horizontal Transport in Ti3C2Tx MXene for Highly Efficient Osmotic Energy Conversion from Saline‐Alkali Environments. , 63(48), DOI: https://doi.org/10.1002/anie.202414984.

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Publication Details

Type

Article

Year

2024

Authors

12

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1002/anie.202414984

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