绿色合成氧化锌纳米颗粒并利用红外热成像技术研究其对皮肤的影响

Alrabab Ali Zain Alaabedin, Basaad Hadi Hamza, Aseel Musafa Abdual-Majeed Abdual-Majeed, Salim F. Bamsaoud
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引用次数: 1

摘要

研究的目的是红外成像技术,红外成像是用来检测温度变化及其对皮肤的影响。本研究采用格林合成法制备了氧化锌纳米颗粒(ZnO NPs)。这种方法被认为是制造纳米材料最安全、最简单、最便宜的方法。利用紫外可见、x射线衍射、场发射扫描电镜和透射电镜等技术研究了ZnO纳米粒子的光学和结构特性。ZnO纳米粒子在300 nm左右有一个紫外可见吸收峰。利用Scherrer方程计算ZnO的平均晶径为15.41 nm,这是由101个平面上36.28°处峰的半峰宽度得到的。场发射扫描电镜数据表明,合成的ZnO NPs在其范围内具有一致的形状和尺寸,这些NPs的特征在于它们的直径,并且被组装成不同直径的圆柱形簇,平均尺寸为106。透射电子显微镜对ZnO纳米粒子的不同放大倍率检测表明,大多数ZnO纳米粒子是均匀分散的。红外热成像技术(IRT)用于澄清温度变化与物质对皮肤的影响。这种材料以两种方式放在皮肤上,分别放在兔子的前脚和后脚上。当将ZnO NPs粉末材料与蒸馏水混合,以及将ZnO NPs粉末材料与商用凡士林混合时,我们注意到两种情况下温度都升高。计算每张图像在(3-5)µm波段内与温度变化相关的辐射度。带辐射的图像R2在(3-5)µm范围内的最大值为(0.9209)。总光谱辐射辐射与曲线下的面积成正比,并随着温度的升高向短波方向移动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Green Synthesis of Zinc Oxide Nanoparticles to Study its Effect on the Skin using IR Thermography
The aim of the research is the infrared imaging technique IR Imaging was used to detect temperature changes and their effects on the skin.In this study, ZnO nanoparticles (ZnO NPs) were prepared by Green's synthesis method. This method is considered the safest, easiest, and cheapest way to manufacture nanomaterials. The optical and structural properties of ZnO NPs have been studied by various techniques such as UV visible, X-ray diffraction, Field emission scanning electron microscopy, and Transmission electron microscopy. ZnO NPs had a UV- visible absorption peak at around 300 nm. ZnO's average crystallite diameter was calculated to be 15.41 nm using Scherrer's equation, which was derived from the width at half maximum of the peak more intense on the 101 planes at 36.28°. The Field emission scanning electron microscopy data showed that the synthesized ZnO NPs have a consistent shape and size throughout their range, these NPs are characterized by their diameter and were assembled into cylindrical clusters of varying diameters, with an average size of 106. Different magnifications of the ZnO NPs examined by Transmission electron microscopy showed that the majority of the particles were homogeneously scattered. Infrared thermal imaging technique (IRT) is used to clarify the change in temperature with the effect of the substance on the skin. The material was placed on the skin in two ways and put on the rabbit's front and back feet. When mixing the powder material of ZnO NPs with distilled water, and mixing the powder material of ZnO NPs with commercial Vaseline, we notice in both cases a temperature rise. The radiance was calculated for each image related to the change of temperature in the band (3-5) µm. The highest value in the range (3-5) µm for image R2 with radiation was (0.9209). The total spectral radioactive emission is proportional to the area under the curves and shifts towards shorter wavelengths with increasing temperature.
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