Spectroscopic Characteristics and Coloring Mechanisms of Different Colored Spinels from Myanmar
Abstract
:1. Introduction
2. Materials and Methods
2.1. Materials
2.2. Methods
3. Results and Discussion
3.1. Gemological and Crystallographic Characteristics
3.2. Composition Analysis of Myanmar Spinel
X-ray Fluorescence Spectroscopy (XRF)
3.3. Spectroscopy Analysis of Myanmar Spinel
3.3.1. Fourier Transform Infrared Spectroscopy (FTIR)
3.3.2. Raman Spectra
3.3.3. UV-Vis Spectroscopy
4. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
- Zhang, Y.; Zhu, J.R.; Yu, X.Y. A Comparative Study of the Gemological Characteristics and Inclusions in Spinels from Myanmar and Tajikistan. Crystals 2022, 12, 617. [Google Scholar] [CrossRef]
- Pluthametwisute, T.; Wanthanachaisaeng, B.; Saiyasombat, C.; Sutthirat, C. Minor Elements and Color Causing Role in Spinel:Multi-Analytical Approaches. Minerals 2022, 12, 928. [Google Scholar] [CrossRef]
- Zhao, L.P.; Li, G.; Weng, L.Q. Gemological and Spectroscopic Characteristics of “Jedi” Spinel from Man Sin, Myanmar. Minerals 2022, 12, 1359. [Google Scholar] [CrossRef]
- Bosi, F.; Biagioni, C.; Pasero, M. Nomenclature and classification of the spinel supergroup. Eur. J. Mineral. 2019, 31, 183–192. [Google Scholar] [CrossRef] [Green Version]
- Hill, R.J.; Craig, J.R.; Gibbs, G.V. Systematics of the spinel structure type. Phys. Chem. Miner. 1979, 4, 317–339. [Google Scholar] [CrossRef]
- Li, S.R. Crystallgraphy and Mineralogy; Geological Publishing House: Beijing, China, 2008. [Google Scholar]
- Wang, C.Q.; Zhang, L.K. Gemmology; Geological Publishing House: Beijing, China, 2017; p. 380. [Google Scholar]
- Vincent, P. Hunting for “Jedi” Spinels in Mogok. Gems Gemol. 2014, 50, 46–57. [Google Scholar]
- Günelin, E.J.; Koivula, J.I. Photoatlas of Inclusion in Gemstones; Da Zhi Publishing House: Taiwan, China, 1995; Volume 372–382, pp. 662–714. [Google Scholar]
- Peretti, A.; Günther, D.; Graber, A.L. The Beryllium Treatment of Fancy Sapphires with a New Heat-treatment Technique (Part B). Contrib. Gemol. 2003, 8, 21–34. [Google Scholar]
- Taran, M.N.; Koch-Müller, M.; Langer, K. Electronic absorption spectroscopy of natural (Fe2+, Fe3+)-bearing spinels of spinel s.s.-hercynite and gahnite-hercynite solid solutions at different temperatures and high-pressures. Phys. Chem. Miner. 2005, 32, 175–188. [Google Scholar] [CrossRef]
- Fregola, R.A.; Skogby, H.; Bosi, F.; D’Ippolito, V.; Andreozzi, G.B.; Halenius, U. Optical absorption spectroscopy study of the causes for color variations in natural Fe-bearing gahnite: Insights from iron valency and site distribution data. Am. Miner. 2014, 99, 2187–2195. [Google Scholar] [CrossRef]
- D’Ippolito, V.; Andreozzi, G.B.; Hålenius, U.; Skogby, H.; Hametner, K.; Günther, D. Color mechanisms in spinel: Cobalt and iron interplay for the blue color. Phys. Chem. Miner. 2015, 42, 431–439. [Google Scholar] [CrossRef]
- Gorghinian, A.; Mottana, A.; Rossi, A.; Oltean, F.M.; Esposito, A.; Marcelli, A. Investigating the colour of spinel: 1. Red gem-quality spinels (“balas”) from Ratnapura (Sri Lanka). Rend. Lincei 2013, 24, 127–140. [Google Scholar] [CrossRef]
- Andreozzi, G.B.; D’Ippolito, V.; Skogby, H.; Halenius, U.; Bosi, F. Color mechanisms in spinel: A multi-analytical investigation of natural crystals with a wide range of coloration. Phys. Chem. Miner. 2019, 46, 343–360. [Google Scholar] [CrossRef]
- Boris, C.; Benjamin, R.; Emmanuel, F.; Phillipe, R.; Jean-Luc, D. Blue spinel from the Luc Yen District of Vi-etnam. Gems Gemol. 2015, 51, 2–17. [Google Scholar]
- Kane, R.E.; Kammerling, R.C. Status of Ruby and Sapphire Mining in the Mogok Stone Tract. Gems Gemol. 1992, 28, 152–174. [Google Scholar] [CrossRef]
- Mitchell, A.H.G.; Htay, M.T.; Htun, K.M.; Win, M.N.; Oo, T.; Hlaing, T. Rock relationships in the Mogok metamorphic belt, Tatkon to Mandalay, central Myanmar. J. Asian Earth Sci. 2007, 29, 891–910. [Google Scholar] [CrossRef]
- Keller, P.C. The Rubies of Burma: A Review of the Mogok Stone Tract. Gems Gemol. 1983, 19, 209–219. [Google Scholar] [CrossRef]
- Giuliani, G.; Fallick, A.E.; Boyce, A.J.; Pardieu, V.; Pham, V.L. Pink and Red Spinels In Marble: Trace Elements, Oxygen Isotopes, and Sources. Can. Miner. 2017, 55, 743–761. [Google Scholar] [CrossRef]
- Palke, A.C.; Sun, Z.Y. What Is Cobalt Spinel Unraveling the Causes of Color in Blue Spinels. Gems Gemol. 2018, 54, 262. [Google Scholar]
- White, W.B.; DeAngelis, B.A. Interpretation of the vibrational spectra of spinels. Spectrochim. Acta Part A 1967, 23, 985–995. [Google Scholar] [CrossRef]
- Farmer, V.C. The Infrared Spectra of Minerals; Mineralogical Society: Chantilly, VA, USA, 1974. [Google Scholar]
- Vernidub, N.M.; Pasechnik, Y.A.; Shportko, K.V. Reststrahlen Spectroscopy of MgAl2O4 Spinel. Semicond. Phys. Quantum Electron. Optoelectron. 2002, 5, 95–100. [Google Scholar]
- O’Horo, M.P.; Frisillo, A.L.; White, W.B. Lattice vibrations of MgAl2O4 spinel. J. Phys. Chem. Solids 1973, 34, 23–28. [Google Scholar] [CrossRef]
- Shebanova, O.N.; Lazor, P. Raman study of magnetite (Fe3O4): Laser-induced thermal effects and oxidation. J. Raman Spectrosc. 2003, 34, 845–852. [Google Scholar] [CrossRef]
- D’Ippolito, V.; Andreozzi, G.B.; Bersani, D. Raman fingerprint of chromate, aluminate and ferrite spinels. J. Raman Spectrosc. 2015, 46, 1255–1264. [Google Scholar] [CrossRef]
- Lenaz, D.; Lughi, V. Raman study of MgCr2O4–Fe2+ Cr2O4 and MgCr2O4–MgFe23+ O4 synthetic series: The effects of Fe2+ and Fe3+ on Raman shifts. Phys. Chem. Miner. 2013, 40, 491–498. [Google Scholar] [CrossRef]
- Schmetzer, K.; Haxel, C.; Bank, H. Colour of natural spinels, gahnospinels and gahnites. Neues Jahrb. Fur Mineral. 1989, 160, 159–180. [Google Scholar]
- Lenaz, D.; Skogby, H.; Princivalle, F.; Halenius, U. Structural changes and valence states in the MgCr2O4–FeCr2O4 solid solution series. Phys. Chem. Miner. 2004, 31, 633–642. [Google Scholar] [CrossRef]
- Halenius, U.; Andreozzi, G.B.; Skogby, H. Structural relaxation around Cr3+ and the red-green color change in the spinel (sensu stricto)-magnesiochromite (MgAl2O4–MgCr2O4) and gahnitezincochromite (ZnAl2O4–ZnCr2O4) solid-solution series. Am. Miner. 2010, 95, 456–462. [Google Scholar] [CrossRef]
- Malsy, A.K.; Karampelas, S.; Schwarz, D.; Klemm, L.; Armbruster, T. Tuan DA Orangey-red to orangey-pink gem spinels from a new deposit at Lang Chap (Tan Huong-Truc Lau), Vietnam. J. Gemmol. 2012, 33, 19–27. [Google Scholar] [CrossRef]
Sample | Color | Weight (c t) | Specific Grsavity | Fluorescence (LW) | Chelsea Color Filter | Grating Spectroscope (Hand-Held) |
---|---|---|---|---|---|---|
M1 | Pink | 0.228 | 3.45 | Dark red | No change | / |
M2 | Light violet | 0.338 | 3.56 | Dark red | Pink tones | / |
M3 | Orange | 0.586 | 3.55 | Red | No change | / |
M4 | Orange-Violet | 0.727 | 3.55 | Bright Red | No change | / |
M5 | Red | 0.377 | 3.59 | Bright Red | Bright red tones | Chromium absorption |
M6 | Light blue | 0.515 | 3.58 | None | No change | / |
M7 | Blue | 0.394 | 3.58 | None | No change | Ferrum absorption |
Sample Number | Color | Al2O3 | MgO | Cr2O3 | V2O5 | Fe2O3 | ZnO | SiO2 | SO3 | TiO2 |
---|---|---|---|---|---|---|---|---|---|---|
M1 | pink | 68.311 | 28.501 | 0.161 | 0.173 | 0.118 | 0.087 | 1.667 | 0.917 | ND |
M2 | violet | 57.808 | 25.346 | 0.297 | 0.181 | 0.739 | 1.980 | 2.504 | 0.956 | ND |
M3 | orange | 66.665 | 30.3271 | 0.076 | 0.489 | 0.077 | 0.084 | 1.260 | 0.939 | ND |
M4 | orange-violet | 67.507 | 29.809 | 0.148 | 0.038 | 0.399 | 0.079 | 1.079 | 0.822 | ND |
M5 | red | 65.668 | 30.229 | 1.537 | 0.277 | 0.124 | 0.051 | 1.852 | ND | 0.149 |
M6 | blue | 69.355 | 18.028 | 0.230 | 0.046 | 1.559 | 0.610 | 5.162 | 4.666 | 0.081 |
M7 | blue | 69.576 | 16.238 | ND | 0.312 | 1.901 | 0.159 | 5.284 | 6.340 | 0.044 |
Sample | M1 Pink | M3 Orange | M4 Orange | M5 Red | Assignment | Electronic Transition |
---|---|---|---|---|---|---|
a | / | / | / | / | MCr3+ | Spin-forbidden 4A2g(4F) → 2T1g(2G) |
b | / | / | 382 | 382 | MCr3+ | Spin-allowed 4A2g → 2T1g(F) |
c | 391 | 391 | 390 | 392 | MV3+ | Spin-allowed 3T1g(F) → 3T1g(P) |
d | 410 | 416 | / | 418 | MCr3+ | Spin-allowed 4A2g → 2T1g(F) |
e | / | / | 530 | 535 | MCr3+ | Spin-allowed 4A2g → 2T2g(F) |
f | 542 | 542 | / | / | MV3+ | Spin-allowed 3T1(F) → 3T2(F) |
g | / | / | / | / | MCr3+ | Spin-allowed 4A2g → 2T2g(F) |
h | 669 | 668 | 668 | 660 | Fe2+-Fe3+ | Fe2+-Fe3+ charge transfer |
i | / | / | / | / | MFe2+ | Spin-allowed 5T2g → 5Eg |
Sample | M2 Violet | M6 Blue | Assignment | Electronic Transition |
---|---|---|---|---|
a | 373 | 373 | TFe2+ | Spin-forbidden5E → 3E |
b | 387 | 387 | TFe2+ | Spin-forbidden 5E → 3T1, 3T2 |
c | 411 | 411 | TFe2+ | Spin-forbidden 5E → 3T1 |
d | 457 | 458 | MFe3+ | 6A1g → 4A1g, 4Eg |
e | / | 474 | MFe3+ | |
f | 555 | 554 | TFe2+ | Spin-forbidden 5E → 3T2 |
g | / | 590 | TFe2+ | Spin-forbidden 5E → 3T2 |
h | 657 | 670 | MFe2+ | Fe2-Fe3+ charge transfer |
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Zhang, L.; He, K.; Guo, Q. Spectroscopic Characteristics and Coloring Mechanisms of Different Colored Spinels from Myanmar. Crystals 2023, 13, 575. https://doi.org/10.3390/cryst13040575
Zhang L, He K, Guo Q. Spectroscopic Characteristics and Coloring Mechanisms of Different Colored Spinels from Myanmar. Crystals. 2023; 13(4):575. https://doi.org/10.3390/cryst13040575
Chicago/Turabian StyleZhang, Lei, Kui He, and Qingfeng Guo. 2023. "Spectroscopic Characteristics and Coloring Mechanisms of Different Colored Spinels from Myanmar" Crystals 13, no. 4: 575. https://doi.org/10.3390/cryst13040575
APA StyleZhang, L., He, K., & Guo, Q. (2023). Spectroscopic Characteristics and Coloring Mechanisms of Different Colored Spinels from Myanmar. Crystals, 13(4), 575. https://doi.org/10.3390/cryst13040575