Ly Nguyễn Hoàng, Son Sang Jun, Jang Soonmin, Lee Cheolmin, Lee Jung Il, Joo Sang-Woo
Department of Chemistry, Gachon University, Seongnam 13120, Korea.
Department of Chemistry, Sejong University, Seoul 05006, Korea.
Nanomaterials (Basel). 2021 Oct 5;11(10):2619. doi: 10.3390/nano11102619.
Facile detection of indoor semi-volatile organic compounds (SVOCs) is a critical issue to raise an increasing concern to current researchers, since their emissions have impacted the health of humans, who spend much of their time indoors after the recent incessant COVID-19 pandemic outbreaks. Plasmonic nanomaterial platforms can utilize an electromagnetic field to induce significant Raman signal enhancements of vibrational spectra of pollutant molecules from localized hotspots. Surface-enhanced Raman scattering (SERS) sensing based on functional plasmonic nanostructures has currently emerged as a powerful analytical technique, which is widely adopted for the ultra-sensitive detection of SVOC molecules, including phthalates and polycyclic aromatic hydrocarbons (PAHs) from household chemicals in indoor environments. This concise topical review gives updated recent developments and trends in optical sensors of surface plasmon resonance (SPR) and SERS for effective sensing of SVOCs by functionalization of noble metal nanostructures. Specific features of plasmonic nanomaterials utilized in sensors are evaluated comparatively, including their various sizes and shapes. Novel aptasensors-assisted SERS technology and its potential application are also introduced for selective sensing. The current challenges and perspectives on SERS-based optical sensors using plasmonic nanomaterial platforms and aptasensors are discussed for applying indoor SVOC detection.
便捷检测室内半挥发性有机化合物(SVOCs)是当前研究人员日益关注的关键问题,因为自近期新冠疫情不断爆发以来,人们大部分时间都待在室内,其排放已影响到人类健康。等离子体纳米材料平台可以利用电磁场从局部热点诱导污染物分子振动光谱产生显著的拉曼信号增强。基于功能性等离子体纳米结构的表面增强拉曼散射(SERS)传感目前已成为一种强大的分析技术,被广泛用于超灵敏检测SVOC分子,包括室内环境中家用化学品中的邻苯二甲酸盐和多环芳烃(PAHs)。这篇简明的专题综述介绍了表面等离子体共振(SPR)和SERS光学传感器的最新进展和趋势,通过贵金属纳米结构功能化实现对SVOCs的有效传感。对传感器中使用的等离子体纳米材料的特定特性进行了比较评估,包括它们的各种尺寸和形状。还介绍了新型适体传感器辅助SERS技术及其潜在应用,以实现选择性传感。讨论了使用等离子体纳米材料平台和适体传感器的基于SERS的光学传感器在应用于室内SVOC检测方面的当前挑战和前景。