Insights of nanomaterials integrated analytical approaches for detection of plant hormones in agricultural and environmental samples

纳米材料 纳米技术 生物分子 生物传感器 材料科学 化学 生化工程 环境化学 工程类
作者
Juhi B. Raval,Vaibhavkumar N. Mehta,Rakesh Kumar Singhal,Hirakendu Basu,Sanjay Jha,Suresh Kumar Kailasa
出处
期刊:Trends in Environmental Analytical Chemistry [Elsevier BV]
卷期号:39: e00205-e00205 被引量:27
标识
DOI:10.1016/j.teac.2023.e00205
摘要

Hormones are an important class of biomolecules as they regulate the physiological responses in the living organisms. Recently, nanomaterials-based biosensors have been widely researched due to their outstanding merits like stabilty, selectivity, biocompatibility, facile synthetic approach, and cost-effectiveness. In this review, we cover in detail the recent advancements of nanomaterials (carbon dots, carbon nanotubes, metal nanoparticles, metal oxides, metal-organic frameworks, metal nanoclusters and quantum dots) in electrochemcial, colorimetric and fluorescence sensing of plant hormones. This review also provides a brief outline on the classificaiton of phytohormones and the sample preparation appraoches for the extraction of phytohormones prior to their identification by various analytical techniques. This review will focus on the selected research papers on nanomaterials as electrochemical, colorimetric and fluorescent sensors for the plant hormones detection from the last twelve years (i.e., 2011 −2023). Nanomaterials integrated analytical techniques (electrochemcial, colorimetric and fluorescence) offer to detect plat hormones with lower detection limits (fM to µM and ng/mL to pg/mL). Importantly, nanomaterials integrated analytical strategies have been successfully detected plant hormones with minimal volumes and sample preparations. The various advantages and limitations of techniques have been also overviewed. The challenges and future perspectives of nanomaterials-based electro- and optical sensors for the analysis of plant hormones are discussed in detail.
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