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微等离子体辅助合成具有增强氧化酶样活性的混合价态 Ce-MOF,用于多巴胺的比色传感。

Microplasma-assisted synthesis of a mixed-valence Ce-MOF with enhanced oxidase-like activity for colorimetric sensing of dopamine.

机构信息

College of Chemistry and Materials Science, Sichuan Normal University, Chengdu 610068, China.

出版信息

Analyst. 2022 Nov 21;147(23):5355-5362. doi: 10.1039/d2an01420c.

Abstract

Due to their high catalytic activity, stability and low cost, nanozymes with oxidase-like activity have attracted widespread interest in the fields of analytical detection and colorimetric sensing. To further promote the catalytic activity and the sensitivity of dopamine (DA) sensing, herein, a mixed valence Ce-MOF (MVCM) with enhanced oxidase-like activity was synthesized by the dielectric barrier discharge (DBD) microplasma method. Compared with hydrothermal synthesis, the prepared MVCM synthesized using a microplasma showed a higher catalytic activity, which benefits from a low Ce/Ce ratio. Due to the spontaneous redox properties of Ce/Ce in a MVCM, the MVCM-based colorimetric sensing of dopamine was established and showed a limit of detection of 0.74 μM over a linear range of 5-100 μM with high selectivity and stability and has been applied for the detection of dopamine in sweat. The proposed study provides an effective synthesis method for nanozymes with enhanced activity and shows great promise in widespread analytical and sensing applications.

摘要

由于具有高催化活性、稳定性和低成本,具有氧化酶样活性的纳米酶在分析检测和比色传感领域引起了广泛关注。为了进一步提高多巴胺(DA)传感的催化活性和灵敏度,本文采用介质阻挡放电(DBD)微等离子体法合成了一种具有增强氧化酶样活性的混合价态 Ce-MOF(MVCM)。与水热合成相比,采用微等离子体法制备的 MVCM 表现出更高的催化活性,这得益于 Ce/Ce 比值较低。由于 MVCM 中 Ce/Ce 的自发氧化还原特性,建立了基于 MVCM 的多巴胺比色传感,在 5-100 μM 的线性范围内具有 0.74 μM 的检测限,具有高选择性和稳定性,并已应用于汗液中多巴胺的检测。该研究为具有增强活性的纳米酶提供了一种有效的合成方法,在广泛的分析和传感应用中具有广阔的应用前景。

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