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在水溶液中,通过富含三键的石墨炔吸附剂实现对铅离子的超高效率捕获。

Ultra-high-efficiency capture of lead ions over acetylenic bond-rich graphdiyne adsorbent in aqueous solution.

机构信息

Key Laboratory of Pesticide & Chemical Biology of Ministry of Education, Institute of Environmental and Applied Chemistry, College of Chemistry, Central China Normal University, Wuhan 430079, China.

School of Chemistry and Environmental Engineering, Wuhan Institute of Technology, Wuhan 430074, China.

出版信息

Proc Natl Acad Sci U S A. 2023 Apr 18;120(16):e2221002120. doi: 10.1073/pnas.2221002120. Epub 2023 Apr 10.

Abstract

A satisfactory material with high adsorption capacity is urgently needed to solve the serious problem of environment and human health caused by lead pollution. Herein, hydrogen-substituted graphdiyne (HsGDY) was successfully fabricated and employed to remove lead ions from sewage and lead-containing blood. The as-prepared HsGDY exhibits the highest adsorption capacity of lead among the reported materials with a maximum adsorption capacity of 2,390 mg/g, i.e., ~five times larger than that of graphdiyne (GDY). The distinguished hexagonal hole and stack mode of HsGDY allows the adsorption of more lead via its inner side adsorption mode in one single unit space. In addition, the Pb 6s and H 1s hybridization promotes the strong bonding of lead atom adsorbed at the acetylenic bond of HsGDY, contributing to the high adsorption capacity. HsGDY can be easily regenerated by acid treatment and showed excellent regeneration ability and reliability after six adsorption-regeneration cycles. Langmuir isotherm model, pseudo second order, and density functional theory (DFT) demonstrated that the lead adsorption process in HsGDY is monolayer chemisorption. Furthermore, the HsGDY-based portable filter can handle 1,000 μg/L lead-containing aqueous solution up to 1,000 mL, which is nearly 6.67 times that of commercial activated carbon particles. And, the HsGDY shows good biocompatibility and excellent removal efficiency to 100 μg/L blood lead, which is 1.7 times higher than that of GDY. These findings suggest that HsGDY could be a promising adsorbent for practical lead and other heavy metal removal.

摘要

一种具有高吸附能力的理想材料对于解决由铅污染带来的严重的环境和人类健康问题迫在眉睫。在此,成功制备了氢取代的石墨炔(HsGDY)并将其用于从污水和含铅血液中去除铅离子。所制备的 HsGDY 表现出了在已报道的材料中最高的铅吸附容量,其最大吸附容量为 2390mg/g,即约为石墨炔(GDY)的五倍。HsGDY 独特的六边形孔和堆叠方式允许通过其内侧吸附模式在单个单位空间内吸附更多的铅。此外,Pb6s 和 H1s 的杂化促进了被吸附在 HsGDY 炔键上的铅原子的强键合,有助于实现高吸附容量。通过酸处理可以很容易地对 HsGDY 进行再生,并且在经过六次吸附-再生循环后显示出了优异的再生能力和可靠性。Langmuir 等温线模型、准二级动力学和密度泛函理论(DFT)表明,HsGDY 中的铅吸附过程是单层化学吸附。此外,基于 HsGDY 的便携式过滤器可以处理高达 1000mL 的 1000μg/L 含铅水溶液,这几乎是商业活性炭颗粒的 6.67 倍。并且,HsGDY 表现出良好的生物相容性和对 100μg/L 血液中铅的优异去除效率,比 GDY 高 1.7 倍。这些发现表明 HsGDY 可能是一种有前途的实用铅和其他重金属去除的吸附剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e008/10120024/f78b05f1f29f/pnas.2221002120fig01.jpg

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