在红外光谱测定中固体样品有哪几种制样方法?分别适用于那种情况?

2025-03-12 09:22:15
推荐回答(2个)
回答1:

固体样品的红外光谱测试及分析
一、实验目的:
1、学习有机化合物红外光谱测定的制样方法。
2、学习红外光谱仪的操作技术。
3、了解傅立叶变换红外光谱仪的基本构造及工作原理。
二、实验原理
红外光是一种波长介于可见光区和微波区之间的电磁波谱。波长在0.78~300μm。通常又把这个波段分成三个区域,即近红外区:波长在0.78~2.5μm(波数在12820~100000px-1),又称泛频区;中红外区:波长在2.5~25μm(波数在4000~10000px-1),又称基频区;远红外区:波长在25~300μm(波数在400~825px-1),又称转动区。其中中红外区是研究、应用最多的区域。
红外区的光谱除用波长λ表征外,更常用波数(wave number)σ表征。波数是波长的倒数,表示单位厘米波长内所含波的数目。作为红外光谱的特点,首先是应用面广,提供信息多且具有特征性,故把红外光谱通称为"分子指纹"。它最广泛的应用还在于对物质的化学组成进行分析。

回答2:

(1)压片法
将1~2mg试样与200mg纯KBr研细均匀,置于模具中,用(5~10)x107Pa压力在油压机上压成透明薄片,即可用语测定。试样和KBr都应经干燥处理,研磨到粒度小于2微米,以免散射光影响。
(2)石蜡糊法
将干燥处理后的试样研细,与液体石蜡或全氟代烃混合,调成糊状,夹在盐片中测定。
(3)薄膜法
主要用于高分子化合物的测定。可将它们直接加热熔融制或压制成膜。也可将试样溶解在低沸点的易挥发溶剂中,涂在盐片上,待溶剂挥发后成膜测定。

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