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Original Articles

Voidites in diamond Evidence for a crystalline phase containing nitrogen

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Pages L49-L54 | Received 27 May 1986, Accepted 10 Jun 1986, Published online: 27 Sep 2006

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Read on this site (9)

M. Aki, Y. Ohno, H. Kohno & S. Takeda. (2000) Formation of microcracks in cubic boron nitride. Philosophical Magazine A 80:3, pages 747-758.
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S.R. Boyd, I. Kiflawi & G.S. Woods. (1995) Infrared absorption by the B nitrogen aggregate in diamond. Philosophical Magazine B 72:3, pages 351-361.
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W. Luyten, G. Van Tendeloo, P.J. Fallon & G.S. Woods. (1994) Electron microscopy and energy-loss spectroscopy of voidites in pure type IaB diamonds. Philosophical Magazine A 69:4, pages 767-778.
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ByG. S. Woods, I. Kiflawi, W. Luyten & G. Van Tendeloo. (1993) Infrared spectra of type IaB diamonds. Philosophical Magazine Letters 67:6, pages 405-411.
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W. Luyten, G. Van Tendeloo, S. Amelinckx & J.L. Collins. (1992) Electron microscopy study of defects in synthetic diamond layers. Philosophical Magazine A 66:6, pages 899-915.
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G. Van Tendeloo, W. Luyten & G.S. Woods. (1990) Voidites in pure type IaB diamonds. Philosophical Magazine Letters 61:6, pages 343-348.
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T. Evans & G.S. Woods. (1987) The infrared absorption spectra of diamonds expected to contain voidites. Philosophical Magazine Letters 55:6, pages 295-299.
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Articles from other publishers (15)

Hiroyuki Kagi, Toshinori Kubo, Ayako Shinozaki, Taku Okada, Hiroaki Ohfuji & Aiko Nakao. (2019) Reaction between Forsterite and Nitrogen Fluid at High Pressure and High Temperature. Geochemistry International 57:9, pages 956-963.
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Tingting GuHiroaki Ohfuji & Wuyi Wang. (2019) Origin of milky optical features in type IaB diamonds: Dislocations, nano-inclusions, and polycrystalline diamond. American Mineralogist 104:5, pages 652-658.
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Peter Harris. (2018) Transmission Electron Microscopy of Carbon: A Brief History. C 4:1, pages 4.
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Oded Navon, Richard Wirth, Christian Schmidt, Brooke Matat Jablon, Anja Schreiber & Simon Emmanuel. (2017) Solid molecular nitrogen (δ-N2) inclusions in Juina diamonds: Exsolution at the base of the transition zone. Earth and Planetary Science Letters 464, pages 237-247.
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J. Rudloff-Grund, F.E. Brenker, K. Marquardt, D. Howell, A. Schreiber, S.Y. O'Reilly, W.L. Griffin & F.V. Kaminsky. (2016) Nitrogen nanoinclusions in milky diamonds from Juina area, Mato Grosso State, Brazil. Lithos 265, pages 57-67.
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I. Kiflawi & J. Bruley. (2000) The nitrogen aggregation sequence and the formation of voidites in diamond. Diamond and Related Materials 9:1, pages 87-93.
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H. Fujita & N. Sumida. 1998. Physics of New Materials. Physics of New Materials 231 268 .
D. Bernaerts & Severin Amelinckx. 1996. Handbook of Microscopy. Handbook of Microscopy 437 482 .
. 1996. Handbook of Microscopy Set. Handbook of Microscopy Set 437 482 .
H. Fujita & N. Sumida. 1994. Physics of New Materials. Physics of New Materials 226 263 .
Marc Verwerft, Wout Luyten & Severin Amelinckx. (1990) Two remarkable defect related electron diffraction effects. Microscopy Microanalysis Microstructures 1:3, pages 167-173.
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G.S. Woods, G.C. Purser, A.S.S. Mtimkulu & A.T. Collins. (1990) The nitrogen content of type Ia natural diamonds. Journal of Physics and Chemistry of Solids 51:10, pages 1191-1197.
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P. B. Hirsch. (2011) TEM in materials science—past, present and future. Journal of Microscopy 155:3, pages 361-371.
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. (1997) On the measurement of population density and size of platelets in type I a diamond and its implications for platelet structure models. Proceedings of the Royal Society of London. A. Mathematical and Physical Sciences 419:1857, pages 235-257.
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E. Ruedl, G. Valdrè, P. Delavignette & U. Valdrè. (1988) Structural and analytical electron microscopy of dislocation loops and precipitates formed during ageing of an α-bombarded MnCr austenitic steel. Physica Status Solidi (a) 107:2, pages 745-758.
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