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通过伽马辐照对石墨烯量子点的结构和发光性能进行修饰及其在光动力疗法中的应用。

Modification of Structural and Luminescence Properties of Graphene Quantum Dots by Gamma Irradiation and Their Application in a Photodynamic Therapy.

机构信息

Vinča Institute of Nuclear Sciences, University of Belgrade , P.O. Box 522, Mike Petrovica Alasa 12-14, 11001 Belgrade, Serbia.

Department of Chemical and Pharmaceutical Sciences, INSTM, Center of Excellence for Nanostructured Materials (CENMAT), University of Trieste , via L. Giorgieri 1, 34127 Trieste, Italy.

出版信息

ACS Appl Mater Interfaces. 2015 Nov 25;7(46):25865-74. doi: 10.1021/acsami.5b08226. Epub 2015 Nov 16.

Abstract

Herein, the ability of gamma irradiation to enhance the photoluminescence properties of graphene quantum dots (GQDs) was investigated. Different doses of γ-irradiation were used on GQDs to examine the way in which their structure and optical properties can be affected. The photoluminescence quantum yield was increased six times for the GQDs irradiated with high doses compared to the nonirradiated material. Both photoluminescence lifetime and values of optical band gap were increased with the dose of applied gamma irradiation. In addition, the exploitation of the gamma-irradiated GQDs as photosensitizers was examined by monitoring the production of singlet oxygen under UV illumination. The main outcome was that the GQDs irradiated at lower doses act as better photoproducers than the ones irradiated at higher doses. These results corroborate that the structural changes caused by gamma irradiation have a direct impact on GQD ability to produce singlet oxygen and their photostability under prolonged UV illumination. This makes low-dose irradiated GQDs promising candidates for photodynamic therapy.

摘要

本文研究了伽马射线辐照增强石墨烯量子点(GQDs)光致发光性能的能力。使用不同剂量的γ射线辐照 GQDs,以研究其结构和光学性质可能受到的影响。与未辐照材料相比,高剂量辐照的 GQDs 的光致发光量子产率提高了六倍。光致发光寿命和光学带隙值都随着施加的伽马射线剂量的增加而增加。此外,还通过监测在 UV 光照下 singlet oxygen 的产生来研究了伽马辐照 GQDs 作为光增敏剂的利用。主要结果是,低剂量辐照的 GQDs 比高剂量辐照的 GQDs 更能有效地产生 singlet oxygen。这些结果证实了伽马射线辐照引起的结构变化对 GQD 产生 singlet oxygen 的能力及其在长时间 UV 照射下的光稳定性有直接影响。这使得低剂量辐照的 GQDs 成为光动力治疗的有前途的候选者。

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