Determining of Chemical Bond Properties in Hydrocarbons by Using Infrared Spectrum

Puhandoy Amir Mohammad Khair Oghli
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 The light of infrared can create the bond angle between the atoms in a compound to decrease and increase as it reaches back to equilibrium. While a molecule of a compound absorbs the light of infrared radiation, its chemical bonds vibrate. When the radiation is absorbed, the bond can stretch, contract, and bend. This is the reason that the infrared spectroscopy is a type of vibrational spectroscopy. When the bond absorbs the radiation that matches the frequency of the vibration of one of its bonds and this means that the molecule is exposed to infrared radiation.
 The radiation of infrared absorbed allows the bond to vibrate a bit more, that is increase the amplitude observation, but the vibrational frequency will remain the same.","PeriodicalId":13755,"journal":{"name":"International Journal For Research in Applied Sciences and Biotechnology","volume":" 5","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2023-11-09","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"International Journal For Research in Applied Sciences and Biotechnology","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.55544/jrasb.2.5.21","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
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Abstract

The spectroscopy of infrared is type of vibrational spectroscopy which is bases on the fact that a molecule absorbs infrared radiation, it is chemical bond vibrate. The bonds can stretch, contract, and bend have characteristic vibrations depending on the atoms in the bond, the number of bonds, and the orientation of those bonds with respect to the rest of the molecule. The troughs in the spectrum are caused by the absorption of infrared frequencies by chemical bonds, which are often characteristic of combinations of atoms or functional groups. The light of infrared can create the bond angle between the atoms in a compound to decrease and increase as it reaches back to equilibrium. While a molecule of a compound absorbs the light of infrared radiation, its chemical bonds vibrate. When the radiation is absorbed, the bond can stretch, contract, and bend. This is the reason that the infrared spectroscopy is a type of vibrational spectroscopy. When the bond absorbs the radiation that matches the frequency of the vibration of one of its bonds and this means that the molecule is exposed to infrared radiation. The radiation of infrared absorbed allows the bond to vibrate a bit more, that is increase the amplitude observation, but the vibrational frequency will remain the same.
红外光谱法测定碳氢化合物化学键性质
红外光谱学是振动光谱学的一种,它是基于分子吸收红外辐射的事实,它是化学键振动。这些键可以拉伸、收缩和弯曲,它们的振动特征取决于键中的原子、键的数量以及这些键相对于分子其余部分的方向。光谱中的波谷是由化学键对红外频率的吸收引起的,化学键通常是原子或官能团组合的特征。红外光可以使化合物中原子间的键角在恢复平衡时减小或增大。当一个化合物分子吸收红外线辐射时,它的化学键就会振动。当辐射被吸收时,化学键可以拉伸、收缩和弯曲。这就是红外光谱学是一种振动光谱学的原因。当键吸收与其中一个键的振动频率相匹配的辐射时,这意味着分子暴露在红外辐射中。红外吸收的辐射使键的振动更大一点,即增加振幅观察,但振动频率将保持不变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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