首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Bond-Selective Imaging of Cells by Mid-Infrared Photothermal Microscopy in High Wavenumber Region
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Bond-Selective Imaging of Cells by Mid-Infrared Photothermal Microscopy in High Wavenumber Region

机译:通过中红线区域中红外光热显微镜通过中红外光热显微镜的粘合选择性成像

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Using a visible beam to probe the thermal effect induced by infrared absorption, mid-infrared photothermal (MIP) microscopy allows bond-selective chemical imaging at submicron spatial resolution. Current MIP microscopes cannot reach the high wavenumber region due to the limited tunability of the existing quantum cascade laser source. We extend the spectral range of MIP microscopy by difference frequency generation (DFG) from two chirped femtosecond pulses. Flexible wavelength tuning in both C-D and C-H regions was achieved with mid-infrared power up to 22.1 mW and spectral width of 29.3 cm(-1). Distribution of fatty acid in live human lung cancer cells was revealed by MIP imaging of the C-D bond at 2192 cm(-1).
机译:使用可见光梁来探测红外吸收诱导的热效应,中红外光热(MIP)显微镜允许在亚微米空间分辨率下粘合选择性化学成像。 由于现有量子级联激光源的可调性有限,电流MIP显微镜不能到达高波纹区域。 通过两个啁啾的飞秒脉冲,通过差异频率产生(DFG)扩展MIP显微镜的光谱范围。 C-D和C-H区域中的柔性波长调谐,中红外电源高达22.1 MW和29.3cm(-1)的光谱宽度。 通过2192cm(-1)的C-D键的MIP成像揭示活人肺癌细胞中脂肪酸的分布。

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