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- W4210362073 endingPage "125747" @default.
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- W4210362073 abstract "Conventionally nanoparticles (NPs) are synthesized using reducing and capping agents that are often hazardous for the environment and are not economically viable. Consequently, there is a growing requirement of bio-friendly methodologies for nanosynthesis via the green chemistry approach. The present study discusses the frugal and cost effective one-pot synthesis of AgAu nanohybrid exploiting the UV-treatment without the use of environmentally hazardous chemicals. Biocompatible pharmaceutical carrier Gelucire® has been utilized for this purpose as both the reducing agent and stabilizer. The obtained nanohybrids displayed unique nano-geometries and generated regions of augmented electromagnetic (EM) intensity ‘hotspots’ while studied on metallic thin films in reverse Kretschmann (RK) configuration. In addition to being highly beneficial from the sustainable development standpoint, the synthesized nanohybrids showcased unprecedented surface plasmon-coupled emission (SPCE) enhancement of >1000-fold and a sharply directional, p-polarized dequenched emission, on account of high EM field intensity. Furthermore, the obtained augmented SPCE enhancement was utilized for attaining femtomolar sensitivity of biologically significant amino acid cysteine using a mobile phone based plasmonics platform. Excellent correlation has been observed between the results obtained using an expensive spectrophotometer and the user-friendly mobile phone-based detector." @default.
- W4210362073 created "2022-02-08" @default.
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- W4210362073 date "2022-03-01" @default.
- W4210362073 modified "2023-10-18" @default.
- W4210362073 title "Gelucire®-mediated heterometallic AgAu nanohybrid engineering for femtomolar cysteine detection using smartphone-based plasmonics technology" @default.
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- W4210362073 doi "https://doi.org/10.1016/j.matchemphys.2022.125747" @default.
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