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Heating efficiency of multi-walled carbon nanotubes in the first and second biological windows

机译:多壁碳的加热效率纳米管在第一和第二生物窗户

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Quantum dot based-thermometry, in combination with double beam confocal microscopy and infrared thermal imaging, has been used to investigate the heating efficiency of multi-walled carbon nanotubes (MWCNTs) under optical excitation within the first (808 nm) and second (1090 nm) biological windows as well as in the spectral region separating them (980 nm). It has been found that for the three excitation wavelengths the heating efficiency of MWCNTs (10 nm in diameter and 1.5 nm in length) is close to 50%. Despite this "flat" heating efficiency, we have found that the excitation wavelength is, indeed, critical during in vivo experiments due to the spectral dependence of both tissue absorption and scattering coefficients. It has been concluded that efficiency and selectivity of in vivo photothermal treatments based on MWCNTs are simultaneously optimized when laser irradiation lies within the first or second biological window.
机译:量子点based-thermometry,结合双光束共焦显微镜和红外热成像,已被用于调查多壁碳的加热效率纳米管(热合)在光激发下在第一(808海里)和第二(1090海里)生物windows以及光谱地区分离(980海里)。发现,三个激发波长热合(10 nm的加热效率直径和长度1.5 nm)接近50%。尽管这个“平坦”加热效率,发现激发波长确实是在体内实验中由于至关重要组织吸收和光谱依赖散射系数。效率和选择性的体内光照疗法基于碳管当激光照射同时优化在第一或第二的生物窗口。

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