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Emulating Solar Spectral Reflectance of Natural Leaf with Bionic Leaf Prepared from 4A Zeolite-Derived Ultramarine Green Pigment

机译:用4A沸石衍生的脱粒绿色颜料制备仿生叶的天然叶的太阳光谱反射率

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摘要

The emulation of the reflectance of green leaf in the solar spectral band (300–2500 nm) has garnered increasing attention from researchers. Currently, various materials have been proposed and investigated as potential bionic leaves. However, the problems such as poor weather durability, heavy metal pollution, and complex preparation technology still persist. Herein, a bionic leaf is prepared from an ultramarine green pigment as the functional material, polyvinylidene fluoride (PVDF) as the film-forming material, and LiCl as the humidizer. To prepare the ultramarine green pigment, the sulfur anion is added into the β cage of the 4A zeolite. The mechanisms and properties were discussed based on X-ray diffraction (XRD), scanning electron microscopy (SEM), Raman spectroscopy, and spectroscopic methods. The results show that the as-fabricated bionic leaf based on the 4A zeolite-derived ultramarine green pigment was able to demonstrate a high spectral similarity coefficient of 0.91 with the green leaf. Furthermore, the spectral similarity coefficient was increased to 0.94 after being subjected to a simulated rainforest environment for 48 h, which indicated its high weather durability.
机译:太阳光谱频带(300-2500nm)中绿叶反射率的仿真已经获得了研究人员的越来越多的关注。目前,已提出各种材料并调查为潜在的仿生叶。然而,天气耐久性,重金属污染和复杂的制备技术等问题仍然存在。在此,仿生叶由脱粒绿色颜料作为功能材料,聚偏二氟乙烯(PVDF)作为成膜材料,以及LiCl作为加湿器。为了制备紫外线绿色颜料,将硫阴离子加入到4A沸石的β笼中。基于X射线衍射(XRD),扫描电子显微镜(SEM),拉曼光谱和光谱方法讨论了机制和性能。结果表明,基于4A沸石衍生的紫外线绿色颜料的AS制造的仿生叶能够展示0.91与绿叶的高光谱相似系数。此外,在对48小时进行模拟的雨林环境后,光谱相似度系数增加到0.94,这表明其高天气耐久性。

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