Assaying of structural parts of hybrid ZP677 grain by IC method disordered Total reflection

Č. Radenović, D. Bajuk-Bogdanović, M. Radosavljević, N. Delić, A. Popović, M. Sečanski, M. Crevar
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Abstract

In this paper, the grain and structural parts of the grain of maize hybrid ZP 677 were studied, using Infrared Spectroscopy - Attenuated Total Reflectance (ATR). The ATR spectra of grain, endosperm, pericarp and germ of maize hybrid are characterized by a number of bands, band intensity, band kinetics and band location distribution in the wavelength range 400 cm-1 to 4000 cm-1. These parameters were specifically tested for both, the grain and the endosperm, pericarp and germ. Spectral bands that are very high and high intensity usually range from 3 to 5, characterized by different intensity, kinetic forms, as well as by the distribution of origin in the wavelength range. These spectral bands enable the identification of the following organic compounds: proteins, carotenoids, ethers, cellulose, lipids, carboxylic acids, amino acids, protein amides, alkanes, sugars, carbohydrates, ketones, alcohols, phenols, aldehydes and amines. Spectral bands of grains, endosperm, pericarp and germs that are low and very low intensity are also characterized by the number of bands, low bandwidth, distribution of the place of origin, and especially by the oscillation frequency of valence bonds of functional groups of organic molecules. Spectral bands that are low and very low intensity enable the identification of organic molecules, compounds and their fragments, as well as the identification of various forms of excited states of molecular structures and excited states of valence bonds of organic molecules. The excited state of molecular structures and the excited state of valence bonds of functional groups of organic molecules are manifested in various forms of oscillatory motion. Examples of functional groups of organic molecules in which all the mentioned excited states of molecular structures and excited states of valence bonds occur are alcohols, amines, alkynes, ketones, alkenes, ester, lipids, carbonyl group (ester), amides, nitrogen-hydrogen group, (NH), primary amines, carboxylic acids, amides, acid chlorides, nitrites, amides, carbonyl group (amide), aliphatic carbon-hydrogen bond and aldehydes.
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杂化ZP677晶粒结构件的IC法无序全反射分析
利用红外光谱-衰减全反射(ATR)技术对玉米杂交种zp677的籽粒和籽粒结构部位进行了研究。玉米杂交种籽粒、胚乳、果皮和胚芽的ATR光谱在400 cm-1 ~ 4000 cm-1波长范围内具有多个波段、波段强度、波段动力学和波段位置分布特征。这些参数分别对籽粒和胚乳、果皮和胚芽进行了测试。非常高和高强度的光谱带通常在3到5之间,其特征在于不同的强度、动力学形式以及在波长范围内的起源分布。这些光谱带能够识别以下有机化合物:蛋白质、类胡萝卜素、醚、纤维素、脂类、羧酸、氨基酸、蛋白酰胺、烷烃、糖、碳水化合物、酮类、醇类、酚类、醛类和胺。颗粒、胚乳、果皮和胚芽的低强度和极低强度谱带也具有谱带数多、带宽低、产地分布等特点,特别是有机分子官能团价键的振荡频率。低强度和极低强度的光谱带可以识别有机分子、化合物及其片段,也可以识别分子结构的各种激发态形式和有机分子价键的激发态。有机分子中分子结构的激发态和官能团价键的激发态表现为各种形式的振荡运动。具有上述所有分子结构激发态和价键激发态的有机分子官能团的例子有醇、胺、炔、酮、烯、酯、脂类、羰基(酯)、酰胺、氮氢基(NH)、伯胺、羧酸、酰胺、酸性氯化物、亚硝酸盐、酰胺、羰基(酰胺)、脂肪族碳氢键和醛。
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