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首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >Infrared Optical Constants from Pressed Pellets of Powders: I. ImprovednandkValues of (NH4)(2)SO(4)from Single-Angle Reflectance
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Infrared Optical Constants from Pressed Pellets of Powders: I. ImprovednandkValues of (NH4)(2)SO(4)from Single-Angle Reflectance

机译:来自压制粒料的红外光学常数:I.(NH4)(2)(2)所以(4)的促进的nandkvalues从单角度反射

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In combination with other parameters, the real, n((v) over tilde), and imaginary, k((v) over tilde), components of the complex refractive index, (n) over cap = n + ik, can be used to simulate the optical properties of a material in different forms, e.g., its infrared spectra. Ultimately, such n/k values can be used to generate a database of synthetic reflectance spectra for the different morphologies to which experimental data can be compared. But obtaining reliable values of the optical constants n/k for solid materials is challenging due to the lack of optical quality specimens, usually crystals, large enough to measure. An alternative to crystals is to press the powder into a uniform disk. We have produced pellets from ammonium sulfate, (NH4)(2)SO4, powder and derived the pellets' n and k values via single-angle reflectance using a specular reflectance device in combination with a Fourier transform infrared spectrometer. The single-angle technique measures amplitude of light reflected from the material as a function of wavelength over a wide spectral domain; the optical constants are determined from the reflectance data using the Kramers-Kronig relationship. We investigate several parameters associated with the pellets and pellet formation and their effects upon delivering the most reliable n/k values. Parameters studied include pellet diameter, mass, and density (void space), drying, grinding, sieving, and particle size in the pellet formation, as well as pressing pressure and duration. Of these parameters, using size-selected mixtures of dried, small (<50 mu m) particles and pressing at >= 10 tons for at least 30 min were found key to forming highly reflective samples. Comparison of two sets of previous literature n(<(v)over tilde>) and k((v) over tilde) values obtained from crystalline (NH4)(2)SO4 both as crystal reflectance as well as extinction spectra of aerosols measured in a flow tube shows reasonable agreement, but suggests the present values, as confirmed from two independent techniques, represent a substantial improvement for n/k values for (NH4)(2)SO4, also demonstrating promise to measure the optical constants of other materials.
机译:与其他参数结合使用,真实的n((v)over tilde)和虚数,k((v)over tilde),可以使用复数折射率(n)上的复数= n + ik的组件以不同形式模拟材料的光学性质,例如其红外光谱。最终,这种n / k值可用于生成用于比较实验数据的不同形态的合成反射谱系数据库。但是,由于缺乏光学质量标本,通常是晶体,足够大的光学质量标本,获得固体材料的光学常数N / K的可靠值是挑战性的。晶体的替代方法是将粉末压成均匀的盘。我们使用镜面反射装置与傅里叶变换红外光谱仪组合使用单角反射装置产生来自硫酸铵的硫酸铵(NH 4)(2)(2)SO4,粉末和粉末的颗粒,并通过单角度反射率产生颗粒。单角度技术测量从材料反射的光的幅度作为波长在宽的光谱域上的函数;使用kramers-kronig关系从反射率数据确定光学常数。我们研究了与颗粒和颗粒形成相关的几个参数及其在提供最可靠的N / K值时的效果。所研究的参数包括颗粒直径,质量和密度(空隙空间),颗粒形成中的干燥,研磨,筛分和粒度,以及压力和持续时间。在这些参数中,使用干燥的小(<50μm)颗粒的尺寸选择和按下> = 10吨至少30分钟的键,以形成高度反射的样品。将两组先前文献N(<(v)替换的Tilde>)和k((v)上的曲线上的k((v))与晶体反射率以及测量的气溶胶的消光光谱一起获得流量管显示合理的一致性,但是从两个独立技术证实的那样,表示本值,表示对(NH4)(2)SO4的N / K值的显着改进,也证明了测量其他材料的光学常数。

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