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水稳定性好且三功能的锆基金属有机框架材料用于 CrO 的检测、捕获和光还原。

Hydrolytically Stable and Trifunctional Zirconium-Based Organic Frameworks toward CrO Detection, Capture, and Photoreduction.

机构信息

Xi'an Key Laboratory of Textile Chemical Engineering Auxiliaries, School of Environmental & Chemical Engineering, Xi'an Polytechnic University, Xi'an, Shaanxi 710048, P. R. China.

Key Laboratory of Applied Surface and Colloid Chemistry, Ministry of Education, School of Chemistry & Chemical Engineering, Shanxi Normal University, Xi'an, Shaanxi 710062, P. R. China.

出版信息

Inorg Chem. 2021 Jun 7;60(11):8143-8153. doi: 10.1021/acs.inorgchem.1c00794. Epub 2021 May 23.

Abstract

Chromium Cr(VI) is frequently used in many fields and has been intensively researched for detection and/or removal from contaminated water. However, the existing approaches are still of low efficiency, high cost, and cumbersome in operation. It is thus highly imperative to hunt for alternative avenues to get out of the predicament. In this work, two topological and highly stable zirconium-metal-organic frameworks (Zr-MOFs) of and have been deliberately prepared, displaying channel-type interior spaces replete with free bipyridine/biquinoline matrices and Zr-O defect sites. Because of their unique intrinsic features of high porosity and photosensitivity, and were deployed as versatile platforms to sense, adsorb, and catalytically reduce Cr(VI) ions. Indeed, the Zr-MOF of performs excellently in fluorescence sensing and adsorption trapping of Cr(VI), with an ultralow detection limit of 0.0176 ppm and a fairly high saturated adsorption capacity of 145.77 mg/g, while is more powerful than in photochemical removal of Cr(VI), exhibiting a remarkable reduction efficiency of 98.05% just within 70 min and still up to 92.21% even after five consecutive photocatalytic cycles. Furthermore, possible photoluminescence, quenching, and reduction mechanisms were also tentatively proposed. This study may open up a new avenue for addressing some unresolved environmental issues, that is, the decontamination of highly toxic Cr(VI) from water.

摘要

六价铬(Cr(VI))广泛应用于诸多领域,其在受污染水体中的检测和/或去除方法已得到深入研究。然而,现有的方法仍然存在效率低、成本高和操作繁琐等问题。因此,迫切需要寻找替代方法来摆脱这一困境。在这项工作中,我们特意制备了两种具有拓扑结构和高度稳定性的锆基金属有机骨架(Zr-MOFs),即[Zr6O4(OH)4(L1)6]·2H2O()和[Zr6O4(OH)4(L2)6]·2H2O()。这两种材料均具有通道型内部空间,其中充满了游离的联吡啶/联喹啉基质和 Zr-O 缺陷位。由于其具有高孔隙率和光敏性等独特的固有特性,我们将 和 用作多功能平台,以实现对 Cr(VI)离子的传感、吸附和催化还原。实际上,Zr-MOF 对 Cr(VI)的荧光传感和吸附捕获性能优异,其检测限低至 0.0176 ppm,饱和吸附容量高达 145.77 mg/g;而 则比 更擅长光化学去除 Cr(VI),仅在 70 min 内即可达到 98.05%的显著还原效率,甚至在连续五次光催化循环后仍保持 92.21%的还原效率。此外,还提出了可能的光致发光、猝灭和还原机制。本研究为解决一些尚未解决的环境问题(即从水中去除高毒性的 Cr(VI))开辟了新途径。

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