CIE color coordinates for the design of luminescent glass materials

IF 1.2 3区 工程技术 Q4 CHEMISTRY, APPLIED
Andreia Ruivo, César Laia
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Abstract

New photoluminescent materials have numerous possibilities in many different areas from technological applications to contemporary glass art and design, encouraging the development of new forms and products. Glass luminescent materials, known for their exceptional durability and recyclability, position glass as an ideal solution for fostering a more sustainable future. In recent years, white luminescence in glass and ceramics has been the subject of several investigations about its possible application in white light-emitting diodes (WLED). Color coordinates and CIE chromaticity diagrams serve as valuable tools to represent and define the range of luminescent colors achievable in a particular composition. These aid in understanding wheter a composition can be used to produce white luminescence or various other colors.  In this study, a soda-lime silicate glass composition was doped with a mixture of different lanthanide oxides to increase the luminescence color palette. The same glass sample can also present different colors by changing the excitation light, allowing higher tunability of luminescent colors. It was effectively demonstrated the extensive spectrum of colors produced, which was represented through luminescence color coordinates for all synthesized glasses. Moreover, the possibility of detecting if an excited state process is occurring was studied by calculating the lanthanides factors and comparing them with those used in the glass synthesis. Nevertheless, it is shown that the energy transfer process has to be significant to influence the color coordinates and the calculation of the factors.

Abstract Image

Abstract Image

设计发光玻璃材料的 CIE 颜色坐标
从技术应用到当代玻璃艺术和设计,新型光致发光材料在许多不同的领域都具有无限的可能性,从而促进了新形式和新产品的开发。玻璃发光材料以其卓越的耐久性和可回收性而著称,是促进未来可持续发展的理想解决方案。近年来,关于玻璃和陶瓷中的白光发光材料在白光发光二极管(WLED)中的应用,已经进行了多项研究。色坐标和 CIE 色度图是表示和定义特定成分可实现的发光颜色范围的重要工具。这有助于理解一种成分是可以用来产生白色发光还是其他各种颜色。 在本研究中,一种钠钙硅酸盐玻璃成分掺杂了不同镧系氧化物的混合物,以增加发光颜色的调色板。同一玻璃样品还可以通过改变激发光呈现不同的颜色,从而实现更高的发光颜色可调性。通过所有合成玻璃的发光颜色坐标,有效地展示了所产生的广泛的颜色光谱。此外,还通过计算镧系元素并将其与玻璃合成过程中使用的镧系元素进行比较,研究了检测激发态过程是否发生的可能性。不过,研究表明,能量转移过程必须对颜色坐标和系数计算产生重大影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Color Research and Application
Color Research and Application 工程技术-工程:化工
CiteScore
3.70
自引率
7.10%
发文量
62
审稿时长
>12 weeks
期刊介绍: Color Research and Application provides a forum for the publication of peer-reviewed research reviews, original research articles, and editorials of the highest quality on the science, technology, and application of color in multiple disciplines. Due to the highly interdisciplinary influence of color, the readership of the journal is similarly widespread and includes those in business, art, design, education, as well as various industries.
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