红外光谱学 Infrared spectroscopy




红外光谱学是光谱学中研究电磁光谱红外部分的分支。它包括了许多技术,到目前为止最常用的是吸收光谱学。同所有的分光镜技术一样,它可以被用来鉴别一种化合物和研究样品的成分。红外光谱学相关表见于文献,方便查找。
单词 | Infrared spectrometry |
释义 |
Infrared spectrometry
中文百科
红外光谱学 Infrared spectroscopy(重定向自Infrared spectrometry)
![]() ![]() ![]() ![]() 红外光谱学是光谱学中研究电磁光谱红外部分的分支。它包括了许多技术,到目前为止最常用的是吸收光谱学。同所有的分光镜技术一样,它可以被用来鉴别一种化合物和研究样品的成分。红外光谱学相关表见于文献,方便查找。
英语百科
Infrared spectroscopy 红外光谱学(重定向自Infrared spectrometry)
![]() ![]() ![]() ![]() Infrared spectroscopy (IR spectroscopy or Vibrational Spectroscopy) is the spectroscopy that deals with the infrared region of the electromagnetic spectrum, that is light with a longer wavelength and lower frequency than visible light. It covers a range of techniques, mostly based on absorption spectroscopy. As with all spectroscopic techniques, it can be used to identify and study chemicals. For a given sample which may be solid, liquid, or gaseous, the method or technique of infrared spectroscopy uses an instrument called an infrared spectrometer (or spectrophotometer) to produce an infrared spectrum. A basic IR spectrum is essentially a graph of infrared light absorbance (or transmittance) on the vertical axis vs. frequency or wavelength on the horizontal axis. Typical units of frequency used in IR spectra are reciprocal centimeters (sometimes called wave numbers), with the symbol cm. Units of IR wavelength are commonly given in micrometers (formerly called "microns"), symbol μm, which are related to wave numbers in a reciprocal way. A common laboratory instrument that uses this technique is a Fourier transform infrared (FTIR) spectrometer. Two-dimensional IR is also possible as discussed below. |
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