The OH site in topaz: an IR spectroscopic investigation

被引:0
作者
Anke Watenphul
Eugen Libowitzky
Bernd Wunder
Matthias Gottschalk
机构
[1] Deutsches GeoForschungsZentrum (GFZ),Institut für Mineralogie und Kristallographie
[2] Universität Wien–Geozentrum,undefined
来源
Physics and Chemistry of Minerals | 2010年 / 37卷
关键词
Topaz; IR spectroscopy; Hydrogen bond geometry; Autocorrelation analysis;
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摘要
The OH site in topaz is investigated by IR spectroscopy depending on the OH concentration and temperature. The two OH bands that can be distinguished are due to the local ordering of F and OH in opposite sites of the crystal structure. The first typical sharp band stems from OH groups with fluorine in the opposite (=acceptor) site. The second band occurs as a shoulder on the low-energy wing and is related to two opposite OH groups. The degree of local OH–OH ordering depends on the OH concentration and, due to statistical F/OH distribution, can be predicted by probability calculations. The substitution of OH for F has a non-linear effect on the increase of the lattice parameters. An autocorrelation analysis of the IR spectra revealed two temperature-induced phase transitions. At −135°C, the local symmetry changes from P1 to Pbn21, although this change involves only the H atoms. The transition from Pbn21 to Pbnm at 160°C is caused by changes of the local F/OH ordering in the crystal structure.
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页码:653 / 664
页数:11
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共 73 条
[1]  
Aines RD(1985)The high-temperature behavior of trace hydrous components in silicate minerals Am Mineral 70 1169-1179
[2]  
Rossman GR(2003)X-ray single-crystal structure refinement of an OH rich topaz from Sulu UHP terrane (Eastern China)—structural foundation of the correlation between cell parameters and fluorine content Eur J Mineral 15 875-881
[3]  
Alberico A(1928)The structure of topaz [Al(F, OH)]2SiO4 Proc R Soc Lond A121 358-367
[4]  
Ferrando S(1982)The thermodynamic properties of topaz solid solution and some petrological applications Am Mineral 67 956-974
[5]  
Ivaldi G(1987)Vibrational spectra of single-crystal topaz Phys Chem Miner 15 148-154
[6]  
Alston NA(2003)Contrasting behavior of two hydroxyl-bearing metamorphic minerals under pressure: clinozoesite and topaz Am Mineral 88 1460-1470
[7]  
West I(1996)The stability and composition of phengitic muscovite and associated phases from 5.5 to 11 GPa: implications for deeply subducted sediments Geochim Cosmochim Acta 60 4133-4415
[8]  
Barton MD(2006)Elastic behaviour and structural evolution of topaz at high pressure Phys Chem Miner 33 235-242
[9]  
Beny JM(2006)New insight into crystal chemistry of topaz: a multi-methodological study Am Mineral 91 1839-1846
[10]  
Piriou B(1965)Messungen des Ultrarot-Pleochroismus von Mineralen III. Der Pleochroismus der OH Streckfrequenz in Topas N Jb Mineral Mh 1965 380-384