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Simulating the Optical Properties of Graphene Nanodisks for Photothermal Therapy

机译:模拟石墨烯纳米管的光学性能进行光热疗法

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Photothermal therapy, the process of converting light from a laser into heat strong enough to destroy cancer cells, has risen as a promising, safe and minimally invasive means for the treatment of cancer. Designing nanoparticles that can efficiently absorb light and convert it to heat is of critical importance for photothermal therapy. In the recent years, graphene has emerged as a tunable, versatile and promising material in a wide range of applications. There is a lack of studies on graphene based nanoparticles for photothermal therapy. This work presents the use of the finite elements method to calculate the absorption efficiency spectra of single and multiple layer graphene nanodisks of different sizes for the first time. For a graphene sheet, the electromagnetic properties were described in terms of the surface conductivity by Kubo model of conductivity. The results show that increasing the number of graphene layers or radii of nanodisks, increases the absorption efficiency. It was also noticed that the shapes of the absorption spectra of the graphene nanodisks do not have resonance peaks like those of the gold nanoparticles and instead have a more constant response. Despite the fact that the graphene nanodisks demonstrated possess much weaker absorption in comparison to gold nanoparticles, it is expected that increasing the number of layers further would increase the absorption efficiency till it becomes comparable to or maybe even better than gold nanoparticles. The results show the feasibility of graphene based nanoparticles for photothermal therapy and encourage more research on the topic.
机译:光热疗法,将来自激光器的光转化为热量足够强以破坏癌细胞,作为治疗癌症的有前途,安全和微创手段。设计能够有效地吸收光并将其转化为热量的纳米颗粒对于光热疗法至关重要。近年来,石墨烯已成为各种应用中的可调性,通用和有希望的材料。缺乏关于基于石墨烯的纳米颗粒进行光热疗法的研究。这项工作介绍了有限元方法,首次计算不同尺寸的单层和多层石墨烯纳米管的吸收效率光谱。对于石墨烯片,通过Kubo电导率的表面电导率描述了电磁特性。结果表明,增加石墨烯层的数量或纳米缺失的半径,增加吸收效率。还注意到石墨烯纳米管的吸收光谱的形状没有像金纳米颗粒那些那样的共振峰,而是具有更恒定的反应。尽管与金纳米颗粒相比,石墨烯纳米缺失具有更弱的吸收,但是预期增加层数进一步会增加吸收效率,直至其比金纳米颗粒更好或甚至更好。结果表明,石墨烯基纳米粒子的可行性,用于光热疗法,并鼓励更多研究该主题。

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