Influence of Cr2O3 Concentration on the Green Color of Flux Synthesized Emeralds Using the CIE1976 Color System

Author:

Kozaki Daisuke1ORCID,Yanagisawa Kazumichi2,Oishi Shuji2,Nishiwaki Yoshinori3,Komatsu Hibiki4,Kobiro Kazuya5,Ito Akitaka5,Taniguchi Ayano5,Matsuzaki Takuya6

Affiliation:

1. Department of Chemistry and Biotechnology Faculty of Science and Technology Kochi University 2‐5‐1 Akebono‐cho Kochi city Kochi 780‐8520 Japan

2. Interdisciplinary Cluster for Cutting Edge Research, Research Initiative for Supra‐Materials Shinshu University 4‐17‐1, Wakasato Nagano City 380‐8553 Japan

3. Division of Chemistry Faculty of Education Kochi University 2‐5‐1 Akebono‐cho Kochi city Kochi 780‐8520 Japan

4. TOSA Innovative Human Development Programs Kochi University 2‐5‐1 Akebono‐cho Kochi city Kochi 780‐8520 Japan

5. Graduate School of Engineering Kochi University of Technology 185 Miyanokuchi, Tosayamada, Kami Kochi, Tosayamada 782‐8502 Japan

6. Center for Advanced Marine Core Research Kochi University 200 Otsu, Monobe Nankoku city Kochi 783‐8502 Japan

Abstract

AbstractThe color of emeralds is predominantly influenced by the concentration of Cr3+. However, the evaluation of the trend of green color depth of emeralds, based on the practical single crystal synthesis with several instrumental analysis is not investigated in previous researches. Specifically, if the Cr2O3 content is controlled to be in the range of 0.2–0.4 wt%, then emeralds can be synthesized with the most esthetically pleasing color. Therefore, the effect of Cr2O3 concentration within the aforementioned range on the color of emeralds is studied using powder X‐ray diffractometry, digital microscopy, electron probe microanalysis, and micro‐spectrophotometry to understand how to achieve the most esthetically pleasing color. As a result, detailed behaviors relating to the absorbances, L*, a*, and b* values, and the relationship between the emerald crystal color changes and increases in Cr2O3 concentration are elucidated. Notably, the absorbance, L* and a* values change significantly when the Cr2O3 concentration is low (0.00–0.236 wt%). However, the changes in these values are moderate when the Cr2O3 concentration is higher (0.236–0.504 wt%).

Publisher

Wiley

Subject

Condensed Matter Physics,General Materials Science,General Chemistry

Reference39 articles.

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