Exploring the Role and Variability of 3d Transition Metal Complexes in Artistic Coloration through a Bottom-Up Scientific Approach

Colorants Pub Date : 2024-06-13 DOI:10.3390/colorants3020012
Alexandra Coia, Jackson Ruddick, Olivia Kuang, Li-Qiong Wang
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Abstract

Transition metal complexes have historically played a pivotal role in creating vibrant pigments utilized across artistic mediums such as ceramics, paintings, and glass mosaics. Despite their extensive historical use, our understanding of the mechanisms governing transition metal complex behavior has predominantly emerged in recent times, leaving numerous aspects of this process ripe for exploration. These complexes exhibit striking color variations under diverse conditions when employed in pigment formulations. This review utilizes a bottom-up scientific approach, spanning from microscopic to macroscopic scales, to unravel the molecular origins of the colors generated by transition metal complexes in pigments and ceramic glazes. Advanced spectroscopy techniques and computational chemistry play pivotal roles in this endeavor, highlighting the significance of understanding and utilizing analytical data effectively, with careful consideration of each technique’s specific application. Furthermore, this review investigates the influence of processing conditions on color variations, providing valuable insights for artists and manufacturers aiming to enhance the precision and quality of their creations while mitigating environmental impact.
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通过自下而上的科学方法探索 3d 过渡金属配合物在艺术色彩中的作用和可变性
历史上,过渡金属络合物在陶瓷、绘画和玻璃马赛克等艺术媒介中使用的鲜艳颜料的制作过程中发挥了举足轻重的作用。尽管过渡金属复合物在历史上被广泛使用,但我们对过渡金属复合物行为机理的了解主要是在近代才出现的,因此对这一过程的许多方面进行探索的时机已经成熟。在颜料配方中使用这些复合物时,它们在不同条件下会表现出惊人的色彩变化。本综述采用自下而上的科学方法,从微观到宏观,揭示颜料和陶瓷釉料中过渡金属复合物产生色彩的分子起源。先进的光谱学技术和计算化学在这一研究中发挥了关键作用,凸显了有效理解和利用分析数据的重要性,同时也仔细考虑了每种技术的具体应用。此外,本综述还研究了加工条件对颜色变化的影响,为艺术家和制造商提供了有价值的见解,这些艺术家和制造商旨在提高其作品的精度和质量,同时减轻对环境的影响。
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