Demchenko Alexander P, Dekaliuk Mariia O
A V Palladin Institute of Biochemistry, National Academy of Sciences of Ukraine, Leontovicha street 9, Kiev-01601, Ukraine.
Methods Appl Fluoresc. 2013 Aug 12;1(4):042001. doi: 10.1088/2050-6120/1/4/042001.
Small brightly fluorescent carbon nanoparticles have emerged as a new class of materials important for sensing and imaging applications. We analyze comparatively the properties of nanodiamonds, graphene and graphene oxide 'dots', of modified carbon nanotubes and of diverse carbon nanoparticles known as 'C-dots' obtained by different methods. The mechanisms of their light absorption and luminescence emission are still unresolved and the arguments are presented for their common origin. Regarding present and potential applications, we provide critical comparison with the other types of fluorescence reporters, such as organic dyes and semiconductor quantum dots. Their most prospective applications in sensing (based on the changes of intensity, FRET and lifetime) and in imaging technologies on the level of living cells and whole bodies are overviewed. The possibilities for design on their basis of multifunctional nanocomposites on a broader scale of theranostics are outlined.
小的、具有明亮荧光的碳纳米颗粒已成为一类对传感和成像应用很重要的新型材料。我们比较分析了纳米金刚石、石墨烯和氧化石墨烯“点”、改性碳纳米管以及通过不同方法获得的被称为“C点”的各种碳纳米颗粒的性质。它们的光吸收和发光发射机制仍未解决,本文提出了关于它们具有共同起源的论据。关于当前和潜在的应用,我们与其他类型的荧光报告分子(如有机染料和半导体量子点)进行了批判性比较。概述了它们在传感(基于强度、荧光共振能量转移和寿命的变化)以及在活细胞和整个生物体水平的成像技术方面最具前景的应用。还概述了在更广泛的治疗诊断学范围内基于它们设计多功能纳米复合材料的可能性。