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◆ Environmental Science & Technology2026-03-26· Chemistry

Regulated Ionic Channels and Coordinate-Bonded Effect on Enhanced Trivalent-Ion Transport during Electrosorption

Aniu Qian, Hao Wu, Yue Sun, Anning Song, Pengju Yang, Jianming Gao, Hu Shi, Li Cui, Fangqin Cheng

原始摘要(英文原文)· Original abstract
The difficulty in clarifying the overlapping ionic transport pathways of the layered Ti 3 C 2 T x electrode has led to a lack of clear structural criteria to enhance electrosorption (e.g., ion-selective separation, water treatment, and resource recovery). In particular, a highly charged, large trivalent ion brings harsh pursuits on the electrode transport structure. Interlayer spacing is considered the dominant factor to improve trivalent-ion electrosorption capacity. However, our results reveal a weak correlation between the interlayer spacing and ion electrosorption capacity. Instead, capacitive deionization (CDI) experiments and molecular dynamics simulations demonstrate a strong correlation between coordinate-bonded effects, regulated ionic channels within the electrode, and ion adsorption capacity. Through a protonated pg-C 3 N 4 /Ti 3 C 2 T x //activated carbon asymmetric CDI device, strong C 3 N 4 –Al 3+ coordination and induced regulated 3D-structured ion channels achieve an exceptional Al 3+ adsorption capacity (55.22 mg g –1 ) owing to the N–Al bond in electrode–ion interaction, outperforming Mg 2+ and Na + cases (31.26 and 24.36 mg g –1, respectively) caused by parallel layer-stacked C 3 N 4 –Mg 2+ and C 3 N 4 –Na + . Moreover, in the AlCl 3 -adsorbed NaCl solution, the regulated ionic transport channels markedly enhance Na + intercalation, yielding a 2.7-fold increase compared to that of the identical device in fresh NaCl solution after 100 cycles. Practical tests verify the enhanced Al 3+ enrichment and preferential Al 3+ /Na + separation via the ion-capturing CDI electrode. These findings suggest ways to understand and utilize electrode–ion interactions to achieve the reinforced Na + adsorption performance and overcome challenges associated with large multivalent ion adsorption, with implications for ion-selective removal, resource recovery, and multivalent metal-ion energy storage.
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Regulated Ionic Channels and Coordinate-Bonded Effect on Enhanced Trivalent-Ion Transport during Electrosorption — 科研速览 Science Skim