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Optical Ammonia Sensor Based on Upconverting Luminescent Nanoparticles

机译:基于上转换发光纳米粒子的光学氨传感器

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The sensor exploits the phenomenon of upconversion luminescence and is based on (a) the use of upconverting nanoparticles (UCNPs) of the NaYF_(4):Yb,Er type that can be excited with 980 nm laser light to give a green and red luminescence and (h) the pH probe phenol red immobilized in a polystyrene matrix. Exposure of the sensor film to ammonia causes a strong increase in the 560 nm absorption of the pH probe which, in turn, causes the green emission of the UCNPs to be screened off. The red emission of the UCNPs, in contrast, remains unaffected by ammonia and can serve as a reference signal. Due to the use of 980 nm as the excitation light source, the optical signal obtained is completely free of background visible luminescence of the sample and of scattered light. This is highly advantageous in the case of sensing ammonia in complex matrixes.
机译:该传感器利用了上转换发光现象,并且基于(a)使用可以由980 nm激光激发的NaYF_(4):Yb,Er型上转换纳米粒子(UCNP),从而产生绿色和红色发光(h)将pH探针酚红固定在聚苯乙烯基质中。传感器膜暴露于氨中会导致pH探针在560 nm处的吸收大大增加,进而导致UCNP的绿色发射被屏蔽掉。相反,UCNP的红色发射不受氨的影响,可以用作参考信号。由于使用980 nm作为激发光源,因此获得的光信号完全没有样品的背景可见光和散射光。在感测复杂基质中的氨的情况下,这是非常有利的。

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