Makhija Rahul, Barik Pallavi, Mehta Ashish, Ganti Subrahmanya S, Asati Vivek
Department of Pharmaceutical Analysis, ISF College of Pharmacy, Moga, Punjab, India.
Department of Pharmaceutical Chemistry, ISF College of Pharmacy, Moga, India.
Anal Sci. 2024 Nov;40(11):1947-1968. doi: 10.1007/s44211-024-00640-5. Epub 2024 Aug 6.
Innovative and eco-friendly methodologies for the determination of phenolic compounds, showing a paradigm shift in analytical chemistry toward sustainability. Phenolic compounds, valued for their diverse health benefits, have historically been analyzed using methods that often involve hazardous solvents and energy-intensive processes. This review focuses on green analytical chemistry principles, emphasizing sustainability, reduced environmental impact, and analytical efficiency. The use of DES, specifically Ch: Chl-based DES, emerges as a prominent green alternative for extracting phenolic compounds from various sources. The integration of UAE with DES enhances extraction efficiency, contributing to a more sustainable analytical approach. Furthermore, the review highlights the significance of DLLME and SPME in reducing solvent consumption and simplifying extraction procedures. These techniques exemplify the commitment to making phenolic compound analysis environmentally friendly. The incorporation of portable measurement tools, such as smartphones, into analytical methodologies is a notable aspect discussed in the review. Techniques like UA-DLLME leverage portable devices, making phenolic compound determination more accessible and versatile. Anticipating the future, the review foresees ongoing advancements in sustainable analytical approaches, driven by collaborative efforts across diverse disciplines. Novel solvents, extraction techniques, and portable measurement methods are expected to play pivotal roles in the continuous evolution of green analytical methodologies for the analysis of phenolic compounds. The review encapsulates a transformative journey toward environmentally responsible and efficient analytical practices, paving the way for further research and application in diverse analytical settings.
用于测定酚类化合物的创新且环保的方法,显示出分析化学朝着可持续性的范式转变。酚类化合物因其多样的健康益处而受到重视,历史上一直使用通常涉及危险溶剂和能源密集型过程的方法进行分析。本综述聚焦于绿色分析化学原理,强调可持续性、降低环境影响和分析效率。使用DES,特别是基于Ch: Chl的DES,成为从各种来源提取酚类化合物的一种突出的绿色替代方法。将超声辅助提取(UAE)与DES相结合可提高提取效率,有助于实现更可持续的分析方法。此外,该综述强调了分散液液微萃取(DLLME)和固相微萃取(SPME)在减少溶剂消耗和简化提取程序方面的重要性。这些技术体现了使酚类化合物分析环境友好的承诺。将便携式测量工具(如智能手机)纳入分析方法是该综述中讨论的一个显著方面。像超声辅助分散液液微萃取(UA-DLLME)这样的技术利用便携式设备,使酚类化合物的测定更易于进行且用途更广。展望未来,该综述预计在跨学科的共同努力推动下,可持续分析方法将不断进步。新型溶剂、提取技术和便携式测量方法有望在酚类化合物分析的绿色分析方法的持续发展中发挥关键作用。该综述概括了朝着对环境负责且高效的分析实践的变革之旅,为在各种分析环境中的进一步研究和应用铺平了道路。