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Theoretical study on the possible use of SiC microparticles as photothermal agents for the heating of bacteria

机译:SiC微粒作为光热剂加热细菌的理论研究

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Gold nanoparticles exhibiting surface plasmon resonances have been considered as photothermal agents for the selective destruction of bacteria by visible to near-infrared radiation. Here, we consider theoretically the possible complementary use of sub-micron silicon carbide (SiC) particles as photothermal agents for the heating of bacteria by pulsed mid-infrared (MIR) radiation. A SiC microparticle can exhibit surface phonon resonances in the MIR. Similar to the effect of surface plasmon resonances in gold nanoparticles, this could lead to enhanced absorption at the resonant wavelength and strong heating of the microparticle locally. If the heating is sufficient, this might lead to damage of bacterial cells adjacent to SiC particles. We estimate the heating of sub-micron SiC particles in a water medium under various pulse lengths of radiation at wavelength 10.6νm. Noting that SiC is being investigated as a biocompatible material that could be functionalized for biomedical applications, and that an appropriately roughened SiC surface could be expected to exhibit similar surface phonon resonances, we speculate that enhanced heating under MIR radiation may be useful for in vitro sterilization of such surfaces.
机译:表现出表面等离子体共振的金纳米颗粒已被认为是通过可见到近红外辐射选择性破坏细菌的光热剂。在这里,我们从理论上考虑亚微米级碳化硅(SiC)颗粒作为光热剂的补充使用,以通过脉冲中红外(MIR)辐射加热细菌。 SiC微粒可以在MIR中显示表面声子共振。类似于金纳米粒子中表面等离振子共振的影响,这可能导致共振波长处的吸收增强以及微粒的局部强烈加热。如果加热足够,则可能导致与SiC颗粒相邻的细菌细胞受损。我们估计在水介质中亚微米SiC颗粒在波长为10.6νm的各种脉冲脉冲辐射下的加热。注意到SiC被研究为可用于生物医学应用的生物相容性材料,并且适当粗糙的SiC表面有望表现出相似的表面声子共振,我们推测MIR辐射下增强的加热可能对体外灭菌有用这样的表面。

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