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首页> 外文期刊>Journal of Fluorescence >Study of fluorescence quenching in aluminum-doped ceria nanoparticles: Potential molecular probe for dissolved oxygen
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Study of fluorescence quenching in aluminum-doped ceria nanoparticles: Potential molecular probe for dissolved oxygen

机译:铝掺杂二氧化铈纳米粒子中荧光猝灭的研究:溶解氧的潜在分子探针

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This work investigates a novel usage of aluminum-doped ceria nanoparticles (ADC-NPs), as the molecular probe in optical fluorescence quenching for sensing the dissolved oxygen (DO). Cerium oxide (ceria) nanoparticles can be considered one of the most unique nanomaterials that are being studied today due to the diffusion and reactivity of oxygen vacancies in ceria, which contributes to its high oxygen storage capability. Aluminum can be considered a promising dopant to increase the oxygen ionic conductivity in ceria nanoparticles which can improve the sensitivity of ceria nanoparticles to DO. The fluorescence intensity of ADC-NPs, synthesized via chemical precipitation, is found to have a strong inverse relationship with the DO concentration in aqueous solutions. Stern-Volmer constant of ADC-NPs at room temperature is determined to be 454.6 M~(-1), which indicates that ADC-NPs have a promising sensitivity to dissolved oxygen, compared to many presently used fluorophores. In addition, Stern-Volmer constant is found to have a relatively small dependence on temperature between 25 C to 50 C, which shows excellent thermal stability of ADC-NPs sensitivity. Our work suggests that ADC-NPs, at 6 nm, are the smallest diameter DO molecular probes between the currently used optical DO sensors composed of different nanostructures. This investigation can improve the performance of fluorescence-quenching DO sensors for industrial and environmental applications.
机译:这项工作研究了铝掺杂的二氧化铈纳米粒子(ADC-NPs)在光学荧光淬灭中用于检测溶解氧(DO)的分子探针的新用途。由于氧化铈中氧空位的扩散和反应性,氧化铈(氧化铈)纳米颗粒可以被认为是当今正在研究的最独特的纳米材料之一,这有助于其高储氧能力。铝可以被认为是增加二氧化铈纳米颗粒中氧离子传导性的有前途的掺杂剂,其可以改善二氧化铈纳米颗粒对DO的敏感性。发现通过化学沉淀合成的ADC-NP的荧光强度与水溶液中的DO浓度具有很强的反比关系。室温下ADC-NP的Stern-Volmer常数确定为454.6 M〜(-1),表明与许多目前使用的荧光团相比,ADC-NP对溶解氧具有良好的敏感性。另外,发现斯特恩-沃尔默常数对25°C至50°C之间的温度具有相对较小的依赖性,这表明ADC-NPs灵敏度具有出色的热稳定性。我们的工作表明,在目前使用的由不同纳米结构组成的光学DO传感器之间,直径为6 nm的ADC-NP是最小直径的DO分子探针。这项研究可以提高用于工业和环境应用的荧光猝灭DO传感器的性能。

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