4 resultados para Cr3

em ArchiMeD - Elektronische Publikationen der Universität Mainz - Alemanha


Relevância:

10.00% 10.00%

Publicador:

Resumo:

Die vorliegende Arbeit beschftigt sich mit Rubinen der drei derzeit bedeutendsten Vorkommen in Nord-Vietnam, mit ihrer Entstehung, ihrer Charakterisierung, ihrem Edelsteinpotential und ihren Materialeigenschaften im Kontext mit handelsblichen Synthesen. Zur Erstellung der hierfr erforderlichen Datenbanken wurden sowohl phasenanalytische wie chemisch-analytische als auch spektroskopische Methoden benutzt und die Ergebnisse mit den Erkenntnissen klassischer gemmologischer Untersuchungsmethoden interpretiert. Die natrlichen Bildungsbedingungen der Rubine werden der granulit-faziellen Metamorphose der Day Nui Con Voi - Zone innerhalb der Red River Ailao Shan - Region Sdostasiens zugerechnet. Marmore, Gneise und Mobilisationszonen zwischen sehr unterschiedlichen Gesteinen sind dabei zu Trgern von oxidischen Edelsteinmineralen wie Rubin und Spinell geworden, gleichzeitig entstandene Magmatite fhren silikatische Edelsteinminerale wie Turmalin und Topas.Mit IR-, Ramanspektroskopie, Elektronstrahl-Mikrosonde und Edelsteinmikroskop werden Kaolinit, Boehmit, Glimmer, Diaspor, Calcit, Zirkon, Turmalin, Graphit, Rutil als charakterisierende Mineraleinschlsse in vietnamesischen Rubinen bestimmt. Die chemische Zusammensetzung vietnamesischer und synthetischer Rubine wurde mit der Elektronenstrahl-Mikrosonde untersucht. Die vietnamesischen Rubine von Yen Bai, Luc Yen und Nghe An sind aufgrund spezieller Spurenelement-Kombinationen und auch durch Absolutgehalte bestimmter Elemente relativ sicher von Synthesen jeglicher Art zu unterscheiden; selbst die qualitativ besten Synthesen (Douros), die mit klassischen Methoden nur schwer als solche zu identifizieren sind, knnen von hochwertigen natrlichen Rubinen differenziert werden. Polarisierte Absorptionsspektren vietnamesischer Rubine zeigen die typischen Banden des Cr3+ in der Kristallstruktur des Rubins bei 17953 cm-1; 24570 cm-1 (E?c) sowie 17985 cm-1 und 25125 cm-1 (E//c). Sie entsprechen den Spinbergngen 4A2g?4T2g(4F) und 4A2g?4T1g(4F); eine zu beobachtende Verschiebung der Spektrenkante bei 32500 cm-1 zu 35000 cm-1 nach Temperaturbehandlung wird wahrscheinlich von V3+ verursacht. Mit Laser-Fluoreszenzspektroskopie wurden polarisierte Emissionsspektren von ausgewhlten Rubinen mit spezieller Spurenelementchemie aufgenommen; dabei konnte die Schwchung der Fluoreszenzintensitt von Cr durch Fe festgestellt werden. Die Emissionsspektren bestehen aus dem charakteristischen Chromdublett (R1 und R2 Linien bei etwa 693 nm und 694 nm), Seitenbanden in Stoke und anti Stoke-Bereich und n-Linien, die auf die Emission benachbarter, farbwirksamer Ionenpaare zurckzufhren sind. Das Verhltnis der Intensitten der n-Linien bei 702 nm und 705 nm zu den Seitenbandenlinien bei 713 nm zeigt im untersuchten Cr3+-Konzentrationsbereich eine nahezu lineare Abhngigkeit zur Cr3+-Konzentration, unabhngig von der Anregungswellenlnge und der Fe-Konzentration. Die in vietnamesischen Rubinen hufig vorkommenden blauen Farbzonen werden durch elektronische Wechselwirkung von Fe2+/Fe3+ und Fe2+/Ti4+ -Kombinationen verursacht und knnen fr den Edelstein schadlos durch geeignete Temperaturbehandlung eliminiert werden.

Relevância:

10.00% 10.00%

Publicador:

Resumo:

ABSTRACT Corundum is one of the most famous gems materials. Different heat treatment methods for enhancement purposes are commonly applied and accepted in the gem market. With this reason, the identification of the natural, unheated corundum is intensively investigated. In this study, aluminium hydroxide minerals and zircon are focused to observe the crystallization and phase change of these minerals during heat treatment procedures. Aluminium hydroxide minerals can be transformed to alumina with the corundum structure by heating. The reaction history of aluminium hydroxide minerals containing corundum was investigated comparing it with diaspore, boehmite, gibbsite and bayerite by TG and DTA methods. These hydroxide minerals were entirely transformed to corundum after heating at 600C. Zircon inclusions in corundums from Ilakaka, Madagascar, were investigated for the influence of different heat-treatment temperatures on the recovery of their crystalline structure and on possible reactions within and with the host crystals. The host corundum was heated at 500, 800, 1000, 1200, 1400, 1600 and 1800C. The crystallinity, the trapped pressure, and the decomposition of the zircon inclusions within the host corundum have been investigated by Raman spectroscopy. Radiation-damaged zircon inclusions may be used as an indicator for unheated Ilakaka corundum crystals. They are fully recrystallized after heating at 1000C influencing the lowering of the 3 Raman band shift, the decreasing of FWHM of the 3 Raman band and the decreasing of the trapped pressure between the inclusion and the host corundum. Under microscopic observation, surface alterations of the inclusions can be firstly seen from transparent into frosted-like appearance at 1400C. Then, between 1600C and 1800 C, the inclusion becomes partly or even completely molten. The decomposition of the zircon inclusion to m-ZrO2 and SiO2-glass phases begins at the rim of the inclusion after heating from 1200C to 1600C which can be detected by the surface change, the increase of the 3 Raman band position and the trapped pressure. At 1800C, the zircon inclusions entirely melt transforming to solid phases during cooling like m-ZrO2 and SiO2-glass accompanied by an increase of pressure between the transformed inclusion and its host.

Relevância:

10.00% 10.00%

Publicador:

Resumo:

The aim of this work is to measure the stress inside a hard micro object under extreme compression. To measure the internal stress, we compressed ruby spheres (a-Al2O3: Cr3+, 150 m diameter) between two sapphire plates. Ruby fluorescence spectrum shifts to longer wavelengths under compression and can be related to the internal stress by a conversion coefficient. A confocal laser scanning microscope was used to excite and collect fluorescence at desired local spots inside the ruby sphere with spatial resolution of about 1 m3. Under static external loads, the stress distribution within the center plane of the ruby sphere was measured directly for the first time. The result agreed to Hertzs law. The stress across the contact area showed a hemispherical profile. The measured contact radius was in accord with the calculation by Hertzs equation. Stress-load curves showed spike-like decrease after entering non-elastic phase, indicating the formation and coalescence of microcracks, which led to relaxing of stress. In the vicinity of the contact area luminescence spectra with multiple peaks were observed. This indicated the presence of domains of different stress, which were mechanically decoupled. Repeated loading cycles were applied to study the fatigue of ruby at the contact region. Progressive fatigue was observed when the load exceeded 1 N. As long as the load did not exceed 2 N stress-load curves were still continuous and could be described by Hertzs law with a reduced Youngs modulus. Once the load exceeded 2 N, periodical spike-like decreases of the stress could be observed, implying a memory effect under repeated loading cycles. Vibration loading with higher frequencies was applied by a piezo. Redistributions of intensity on the fluorescence spectra were observed and it was attributed to the repopulation of the micro domains of different elasticity. Two stages of under vibration loading were suggested. In the first stage continuous damage carried on until certain limit, by which the second stage, e.g. breakage, followed in a discontinuous manner.

Relevância:

10.00% 10.00%

Publicador:

Resumo:

In this study more than 450 natural sapphire samples (most of basaltic type) collected from 19 different areas were examined. They are from Dak Nong, Dak Lak, Quy Chau, two unknown sources from the north (Vietnam); Bo Ploi, Khao Ploi Waen (Thailand); Ban Huay Sai (Laos); Australia; Shandong (China); Andapa, Antsirabe, Nosibe (Madagascar); Ballapana (Sri Lanka); Brazil; Russia; Colombia; Tansania and Malawi. rnThe samples were studied on internal characteristics, chemical compositions, Raman-, luminescence-, Fourier transform infrared (FTIR)-, and ultraviolet-visible-near infrared (UV-Vis-NIR)- spectroscopy. The internal features of these sapphire samples were observed and identified by gemological microscope, con focal micro Raman and FTIR spectroscopy. The major and minor elements of the samples were determined by electron probe microanalysis (EPMA) and the trace elements by laser ablation inductively coupled plasma mass spectrometry (LA-ICP-MS). rnThe structural spectra of sapphire were investigated by con focal Raman spectroscopy. The FTIR spectroscopy was used to study the vibration modes of OH-groups and also to determine hydrous mineral inclusions in sapphire. The UV-Vis-NIR absorption spectroscopy was used to analyze the cause of sapphire color. rnNatural sapphires contain many types of mineral inclusions. Typically, they are iron-containing inclusions like goethite, ilmenite, hematite, magnetite or silicate minerals commonly feldspar, and often observed in sapphires from Asia countries, like Dak Nong, Dak Lak in the south of Vietnam, Ban Huay Sai (Laos), Khao Ploi Waen and Bo Ploi (Thailand) or Shandong (China). Meanwhile, CO2-diaspore inclusions are normally found in sapphires from Tansania, Colombia, or the north of Vietnam like Quy Chau. rnIron is the most dominant element in sapphire, up to 1.95 wt.% Fe2O3 measured by EPMA and it affects spectral characteristics of sapphire.rnThe Raman spectra of sapphire contain seven peaks (2A1g + 5Eg). Two peaks at about 418.3 cm-1 and 577.7 cm-1 are influenced by high iron content. These two peaks shift towards smaller wavenumbers corresponding to increasing iron content. This shift is showed by two equations y(418.3)=418.29-0.53x andy(577.7)=577.96-0.75x, in which y is peak position (cm-1) and x is Fe2O3 content (wt.%). By exploiting two these equations one can estimate the Fe2O3 contents of sapphire or corundum by identifying the respective Raman peak positions. Determining the Fe2O3 content in sapphire can help to distinguish sapphires from different origins, e.g. magmatic and metamorphic sapphire. rnThe luminescence of sapphire is characterized by two R-lines: R1 at about 694 nm and R2 at about 692 nm. This characteristic is also influenced by high iron content. The peak positions of two R-lines shift towards to smaller wavelengths corresponding to increasing of iron content. This correlation is showed by two equations y(R_2 )=692.86-0.049x and y(R_1 )=694.29-0.047x, in which y is peak position (nm) of respective R-lines and x is Fe2O3 content (wt.%). Two these equations can be applied to estimate the Fe2O3 content of sapphire and help to separate sapphires from different origins. The luminescence is also applied for determination of the remnant pressure or stress around inclusions in Cr3+-containing corundum by calibrating a 0-pressure position in experimental techniques.rnThe infrared spectra show the presence of vibrations originating from OH-groups and hydrous mineral inclusions in the range of 2500-4000 cm-1. Iron has also an effect upon the main and strongest peak at about 3310 cm-1. The 3310 cm-1 peak is shifted to higher wavenumber when iron content increases. This relationship is expressed by the equation y(3310)=0.92x+3309.17, in which y is peak position of the 3310 cm-1 and x is Fe2O3 content (wt.%). Similar to the obtained results in Raman and luminescence spectra, this expression can be used to estimate the Fe2O3 content and separate sapphires from different origins. rnThe UV-Vis-NIR absorption spectra point out the strong and sharp peaks at about 377, 387, and 450 nm related to dispersed Fe3+, a broad band around 557 and 600 nm related to intervalence charge transfer (IVCT) Fe2+/Ti4+, and a broader band around 863 nm related to IVCT of Fe2+/Fe3+. rnGenerally, sapphires from different localities were completely investigated on internal features, chemical compounds, and solid spectral characteristics. The results in each part contribute for identifying the iron content and separate sapphires from different localities order origins. rn