![]() Real-time parameter controls let you experiment with diffraction and sample settings, with instant feedback. #PHASE DIFFRACTION USING CRYSTALDIFFRACT FULL#I.CrystalDiffract for Windows 10 - Full descriptionĬrystalDiffract reads from saved crystal files, to simulate x-ray or neutron powder diffraction patterns on screen, with easy manipulation and measurement tools. Ono S, Kikegawa T, Ohishi Y, Tsuchiya J (2005) Post-aragonite phase transformation in CaCO 3 at 40 GPa, American Mineralogist, 90, 667-671Īntao S M, Hassan I (2009) The orthorhombic structure of CaCO 3, SrCO 3, PbCO 3 and BaCO 3: Linear structural trends, The Canadian Mineralogist, 47, 1245-1255īuzgar N, Apopei A I (2009) The Raman study of certain carbonates, Analele Stiintifice Ale Universitatii, Al. Nave D, Rosenwaks S, Vago R, Bar I (2004) Pulsed laser deposition of marine origin material: Preparation and characterization of CaCO 3 particles and CaO nanocrystals, Journal of Applied Physics, 95, 8309-8313 Suito K, Namba J, Horikawa T, Taniguchi Y, Sakurai N, Kobayashi M, Onodera A, Shimomura O, Kikegawa T (2001) Phase relations of CaCO 3 at high pressure and high temperature, American Mineralogist, 86, 997-1002 Kontoyannis C G, Nikos V V (2000) Calcium carbonate phase analysis using XRD and FT-Raman, Analyst, 125, 251-255 Determination of the structure of vaterite, Journal of Raman Spectroscopy, 31, 497-501 Gabrielli C, Jaouhari R, Joiret S, Maurin G (2000) In situ Raman spectroscopy applied to electrochemical scaling. Kontoyannis C G, Orkoula M G, Koutsoukos P G (1997) Quantitative analysis of sulfated calcium carbonates using Raman spectroscopy and X-ray powder diffraction, Analyst, 122, 33-38 Gauldie R W, Sharma S K, Volk E (1997) Micro-Raman spectral study of vaterite and aragonite otoliths of the coho salmon, Oncorhynchus kisutch, Comparative Biochemistry and Physiology A-Physiology, 118, 753-757 Sato T, Suda J (1996) Temperature dependence of the linewidth of the first-order Raman spectra for aragonite crystal, Journal of the Physical Society of Japan, 65, 482-488Īlía J M, Díaz de Mera Y D, Edwards H G M, Martín P G, Andrés S L (1997) FT-Raman and infrared spectroscopic study of aragonite-strontianite (Ca xSr 1-xCO 3) solid solution, Spectrochimica Acta Part A-Molecular and Biomolecular Spectroscopy, 53, 2347-2362 Negro A D, Ungaretti L (1971) Refinement of the crystal structure of aragonite, American Mineralogist, 56, 768-772įrech R, Wang E C, Bates J B (1980) The IR and Raman-spectra of CaCO 3 (aragonite), Spectrochimica Acta Part A-Molecular and Biomolecular Spectroscopy, 36, 915-919Ĭloots R (1991) Raman spectrum of carbonates M IICO 3 in the 1100-1000 cm -1 region: observation of the v 1 mode of the isotopic (C 16O 2 18O) 2- ion, Spectrochimica Acta Part A-Molecular and Biomolecular Spectroscopy, 47, 1745-1750 Northwood D O, Lewis D (1970) Strain induced calcite-aragonite transformation in calcium carbonate, The Canadian Mineralogist, 10, 216-224ĭe Villiers J P R (1971) Crystal structures of aragonite, strontianite, and witherite, American Mineralogist, 56, 758-772 Zachariasen W H (1928) Untersuchungen über die Kristallstruktur von Sesquioxyden und Verbindungen ABO 3, Skrifter Utgitt av Det Norske Videnskaps-Akademi i Oslo, 1, 1-165 Karsten D L G (1800) Tabellarische uebersicht der mineralogisch - einfachen fossilien, in Mineralogische Tabellen Heinrich August Rottmann Berlin 34-34 ![]() Gattung Arragonit., Versuch einer Mineralogie für Anfänger und Liebhaber, 2, 1039-1045 Hauy C (1791) Sur l'arragonite de Werner, Bulletin des Science, par la Société Philomathique, 2, 67-68Įstner F J A (1797) 286. Kurze Nachricht von den sogenannten arragonischen Apatiten, Bergmannisches Journal, 1, 76-96 Werner A G (1788) Geschichte, Karakteristik, und kurze chemische Untersuchung des Apatits. Mineralogy, Mineral Data Publishing, Tucson Arizona, USA, by permission of ![]() American Mineralogist Crystal Structure Database Record: Īnthony J W, Bideaux R A, Bladh K W, and Nichols M C (1990) Handbook of ![]()
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