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装饰有银纳米阵列的高柔性铜带作为用于多有害污染物传感的超灵敏表面增强拉曼光谱平台。

Highly flexible copper tape decorated with Ag nanoarrays as ultrasensitive SERS platforms for multi-hazardous pollutant sensing.

作者信息

Shameer Mohamed, Anand Kabali Vijai, Columbus Soumya, Alawadhi Hussain, Daoudi Kais, Gaidi Mounir, Govindaraju Kasivelu

机构信息

Centre for Advanced Materials Research, Research Institute of Sciences and Engineering, University of Sharjah, PO Box 27272, Sharjah, United Arab Emirates.

Department of Physics, Sathyabama Institute of Science & Technology, Tamil Nadu, Chennai, 600 119, India.

出版信息

Mikrochim Acta. 2024 Mar 12;191(4):193. doi: 10.1007/s00604-024-06276-6.

Abstract

A highly flexible and cost-effective copper tape decorated with silver nanoparticles (Cu-TAg) has been developed for surface-enhanced Raman spectroscopy (SERS) sensing of multi-hazardous environmental pollutants. Highly ordered and spherical-shaped silver nanoarrays have been fabricated using a low-cost thermal evaporation method. The structural, morphological, and optical properties of Cu-TAg sensors have been studied and correlated to the corresponding SERS performances. The size of nanoparticles has been successively tuned by varying the deposition time from 5 to 25 s. The nanoparticle sizes were enhanced with an increase in the evaporation time. SERS investigations have revealed that the sensing potential is subsequently improved with an increase in deposition time up to 10 s and then deteriorates with further increase in Ag deposition. The highest SERS activity was acquired for an optimum size of ~ 37 nm; further simulation studies confirmed this observation. Moreover, Cu-TAg sensors exhibited high sensitivity, reproducibility, and recycling characteristics to be used as excellent chemo-sensors. The lower detection limit estimation revealed that it can sense even in the pico-molar range for sensing of rhodamine 6G and methylene blue. The estimated enhancement factor of the sensor is found to be 9.4 × 10. Molecular-specific sensing of a wide range of pollutants such as rhodamine 6G, alizarin red, methylene blue, butylated hydroxy anisole, and penicillin-streptomycin is demonstrated with high efficiencies for micromolar spiked samples. Copper tape functionalized with Ag arrays thus demonstrated to be a promising candidate for low-cost and reusable chemo-sensors for environmental remediation applications.

摘要

一种装饰有银纳米颗粒的高柔韧性且经济高效的铜带(Cu-TAg)已被开发用于对多种有害环境污染物进行表面增强拉曼光谱(SERS)传感。使用低成本的热蒸发方法制备了高度有序且呈球形的银纳米阵列。对Cu-TAg传感器的结构、形态和光学性质进行了研究,并将其与相应的SERS性能相关联。通过将沉积时间从5秒变化到25秒,依次调整了纳米颗粒的尺寸。纳米颗粒尺寸随着蒸发时间的增加而增大。SERS研究表明,传感潜力随着沉积时间增加到10秒而随后得到改善,然后随着银沉积的进一步增加而恶化。对于约37纳米的最佳尺寸,获得了最高的SERS活性;进一步的模拟研究证实了这一观察结果。此外,Cu-TAg传感器表现出高灵敏度、可重复性和可回收特性,可作为优异的化学传感器使用。较低检测限的估计表明,它甚至可以在皮摩尔范围内检测若丹明6G和亚甲基蓝。发现该传感器的估计增强因子为9.4×10。对于微摩尔加标样品,高效地展示了对多种污染物如若丹明6G、茜素红、亚甲基蓝、丁基化羟基茴香醚和青霉素 - 链霉素的分子特异性传感。因此,用银阵列功能化的铜带被证明是用于环境修复应用的低成本且可重复使用的化学传感器的有前途的候选者。

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