Porphyrin‐based conjugated microporous polymer‐grafted graphene electrochemical sensor for vanillin detection

Author:

Xiang Gang123ORCID,Xu Wensi4,Zhuge Wenfeng123,Zhang Zhengfa123,Zhang Cuizhong123,Peng Jinyun123ORCID,Li Fuyan1

Affiliation:

1. College of Chemical and Biological Engineering Guangxi Minzu Normal University Chongzuo China

2. Photochemical Sensing and Regional Environmental Analysis Laboratory Guangxi Minzu Normal University Chongzuo China

3. Guangxi Key Laboratory for High‐Value Utilization of Manganese Resources Chongzuo China

4. College of Food, Drug and Health Management, Guangxi Vocational and Technical College of Quality and Engineering Nanning China

Abstract

AbstractVanillin is often used in food and medicine because of its unique flavor and pharmacological effects. However, excessive vanillin intake can harm human health; therefore, rapid and simple vanillin detection methods are required. In this study, porphyrin‐based conjugated microporous polymer‐grafted graphene (CMP‐rGO) was synthesized via the Sonogashira–Hagihara coupling reaction and assembled into an electrochemical sensor for vanillin detection. Due to the enhanced electrical conductivity and electrocatalytic characteristics of CMP‐rGO, the sensor demonstrated a low detection limit of 0.07 μM and a broad response range of 0.08–20 μM. Furthermore, this reusable sensor exhibited acceptable recoveries when evaluating vanillin in pharmaceuticals and human serum. This study offers technological assistance for the rapid detection of vanillin in pharmaceuticals and broadens the application of CMP‐rGO.

Publisher

Wiley

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