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纳米金刚石表面作为一种发磷光的 pH 传感器。

Nanodiamond surface as a photoluminescent pH sensor.

机构信息

Department of Molecular Compounds Physics, State research institute Center for Physical Sciences and Technology, Vilnius, Lithuania.

Department of Physics and Mathematics, Center for Photonics Sciences, University of Eastern Finland, Joensuu, Finland.

出版信息

Nanotechnology. 2023 Mar 3;34(19). doi: 10.1088/1361-6528/acb94b.

Abstract

A systematic spectroscopic characterization of highly homogeneous water suspensions of 'buckydiamonds' comprising spcubic nanodiamond (ND) core covered with disordered spshell densely decorated with oxygen-containing groups demonstrates the excitation-wavelength-dependent photoluminescence (PL) given by at least four types of specific structures on the ND surface (hydroxyl, C=O containing ketones, carboxylic anhydrides, and carboxyl groups). PL properties of NDs suspensions possess concentration-dependent behavior revealing tendency of NDs to agglomerate. PL of NDs has been found to be strongly sensitive to pH of the environment in wide range of pH values, i.e. 2-11. We disclosed the mechanisms of pH sensitivity of the 'buckydiamond' and proved that it can serve as all-optical sensor of tiny pH variations suitable for further exploitation for pH sensing locally in the area where NDs have been delivered for any purpose, e.g. bioimaging or therapeutic needs.

摘要

对由 sp3 立方纳米金刚石 (ND) 核组成的高度均匀水悬浮液进行系统的光谱特性分析,该核表面覆盖有无序的 sp2 壳,壳上密集地装饰着含氧基团,证明了由 ND 表面至少四种特定结构(羟基、含 C=O 的酮、羧酸酐和羧基)引起的激发波长依赖性光致发光 (PL)。NDs 悬浮液的 PL 性质具有浓度依赖性行为,表现出 NDs 聚集的趋势。发现 NDs 的 PL 对环境 pH 值在很宽的 pH 值范围内非常敏感,即 2-11。我们揭示了“巴基钻石”的 pH 敏感性机制,并证明它可以作为全光学 pH 微小变化传感器,适用于进一步开发用于任何目的(例如生物成像或治疗需求)的 NDs 输送区域的局部 pH 感测。

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