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限域金属离子策略用于从钴苯并咪唑框架衍生的碳材料,在模拟海水中具有高脱盐性能。

Space-Confined Metal Ion Strategy for Carbon Materials Derived from Cobalt Benzimidazole Frameworks with High Desalination Performance in Simulated Seawater.

机构信息

School of Chemistry and Chemical Engineering, Yangzhou University, Yangzhou, Jiangsu, 225002, P. R. China.

Canadian Light Source Inc., University of Saskatchewan, Saskatoon, S7N 2V3, Canada.

出版信息

Adv Mater. 2023 Jun;35(23):e2301011. doi: 10.1002/adma.202301011. Epub 2023 Apr 25.

DOI:10.1002/adma.202301011
PMID:36990112
Abstract

Various metal ions with different valence states (Mg , Al , Ca , Ti , Mn , Fe , Ni , Zn , Pb , Ba , Ce ) are successfully confined in quasi-microcube shaped cobalt benzimidazole frameworks using a space-confined synthesis strategy. More importantly, a series of derived carbon materials that confine metal ions are obtained by high-temperature pyrolysis. Interestingly, the derived carbon materials exhibited electric double-layer and pseudocapacitance properties because of the presence of metal ions with various valence states. Moreover, the presence of additional metal ions within carbon materials may create new phases, which can accelerate Na insertion/extraction and thus increase electrochemical adsorption. Density functional theory results showed that carbon materials in which Ti ions are confined exhibit enhanced insertion/extraction of Na resulting from the presence of the characteristic anatase crystalline phases of TiO . The Ti-containing materials have an impressive desalination capacity (62.8 mg g ) in capacitive deionization (CDI) applications with high cycling stability. This work provides a facile synthetic strategy for the confinement of metal ions in metal-organic frameworks and thus supports the further development of derived carbon materials for seawater desalination by CDI.

摘要

各种具有不同价态的金属离子(Mg、Al、Ca、Ti、Mn、Fe、Ni、Zn、Pb、Ba、Ce)通过空间限制合成策略成功地被限制在类准微立方体形状的钴苯并咪唑骨架中。更重要的是,通过高温热解得到了一系列限制金属离子的衍生碳材料。有趣的是,由于存在具有不同价态的金属离子,衍生碳材料表现出双电层和赝电容特性。此外,碳材料中存在额外的金属离子可能会形成新的相,从而加速 Na 的插入/提取,从而提高电化学吸附性能。密度泛函理论结果表明,由于 TiO 的锐钛矿晶相的存在,Ti 离子限制的碳材料表现出增强的 Na 插入/提取。含钛材料在电容去离子(CDI)应用中具有令人印象深刻的脱盐能力(62.8mg g )和高循环稳定性。这项工作为金属-有机框架中金属离子的限制提供了一种简便的合成策略,从而支持进一步开发衍生碳材料用于 CDI 海水淡化。

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