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Results 1 to 25 of 57

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Dependence of Si-Faceted Dendrite Growth Orientation on Twin Spacing and UndercoolingXINBO YANG; FUJIWARA, K; MAEDA, K et al.Crystal growth & design. 2011, Vol 11, Num 4, pp 1402-1410, issn 1528-7483, 9 p.Article

Characterization of the matrix-twin interface of a (1012) twin during growthOSTAPOVETS, Andriy; SERRA, Anna.Philosophical magazine (2003. Print). 2014, Vol 94, Num 25-27, pp 2827-2839, issn 1478-6435, 13 p.Article

Twinning in ZnO ceramics with Sb2O3 additionsSENDA, T; BRADT, R. C.Nippon seramikkusu kyokai gakujutsu ronbunshi. 1991, Vol 99, Num 9, pp 727-731, issn 0914-5400Article

Morphology of Brazilian twins in synthetic quartz crystalsCABALLERO, M. A; GONZALEZ-MANAS, M.Crystal research and technology (1979). 1988, Vol 23, Num 2, pp K33-K37, issn 0232-1300Article

Extended zonal dislocations mediating {1122}(1123) twinning in titaniumLI, B; KADIRI, H. El; HORSTEMEYER, M. F et al.Philosophical magazine (2003. Print). 2012, Vol 92, Num 7-9, pp 1006-1022, issn 1478-6435, 17 p.Article

Electron backscatter diffraction analysis of a CZT growth tip from a vertical gradient freeze furnaceSUNDARAM, S. K; HENAGER, C. H; EDWARDS, D. J et al.Journal of crystal growth. 2011, Vol 329, Num 1, pp 12-19, issn 0022-0248, 8 p.Article

Energy barriers associated with slip-twin interactionsEZAZ, Tawhid; SANGID, Michael D; SEHITOGLU, Huseyin et al.Philosophical magazine (2003. Print). 2011, Vol 91, Num 10-12, pp 1464-1488, issn 1478-6435, 25 p.Article

Formation mechanism of twin boundaries in lithium tetraborateMAEDA, K; FUJIWARA, K; NOZAWA, J et al.Journal of crystal growth. 2011, Vol 331, Num 1, pp 78-82, issn 0022-0248, 5 p.Article

Structural and magnetic properties of heteroepitaxial Cr02/Ti02 bilayers grown on the Al2O3 substrateDHO, Joonghoe.Journal of crystal growth. 2009, Vol 311, Num 9, pp 2635-2640, issn 0022-0248, 6 p.Article

Growth and mechanical twinning in a tetragonal crystal of the KSCN family treated as a domain structure : experimental results and theoretical analysisFUITH, A; SCHRANZ, W; WARHANEK, H et al.Phase transitions (Print). 1994, Vol 51, Num 1-2, pp 67-85, issn 0141-1594Article

Enabling Ultrahigh Plastic Flow and Work Hardening in Twinned Gold NanowiresCHUANG DENG; SANSOZ, Frederic.Nano letters (Print). 2009, Vol 9, Num 4, pp 1517-1522, issn 1530-6984, 6 p.Article

Shape variations and anisotropic growth of multiply twinned nanoparticlesHOFMEISTER, Herbert.Zeitschrift für Kristallographie. 2009, Vol 224, Num 11, pp 528-538, issn 0044-2968, 11 p.Article

Crystallographic relationships of the {111} growth twins in tetragonal barium titanate determined by electron-backscatter diffractionCHENG, Shun-Yu; HO, New-Jin; LU, Hong-Yang et al.Journal of the American Ceramic Society. 2006, Vol 89, Num 11, pp 3470-3474, issn 0002-7820, 5 p.Article

Mechanisms of silicon crystal growthCHAMA, C. C.Journal of materials science letters. 1998, Vol 17, Num 21, pp 1857-1859, issn 0261-8028Article

Twin intersections in silicon on sapphireBATSTONE, J. L.Philosophical magazine. B. Physics of condensed matter. Structural, electronic, optical and magnetic properties. 1991, Vol 63, Num 5, pp 1037-1050, issn 0958-6644Article

K-like twins: palmitic acidPRASAD, P. B. V.Journal of crystal growth. 1987, Vol 80, Num 1, pp 206-208, issn 0022-0248Article

(001) Twins of stearic acid crystalsSWAMY, R. S. N; BHAGAVAN RAJU, I. V. K.Crystal research and technology (1979). 1987, Vol 22, Num 5, pp K94-K98, issn 0232-1300Article

Contact and penetration twinning of calcium oxalate monohydrate (CaC2O4•H2O)CODY, A. M; CODY, R. D.Journal of crystal growth. 1987, Vol 83, Num 4, pp 485-498, issn 0022-0248Article

A mechanism-based model for deformation twinning in polycrystalline FCC steelWANG, Y. Y; SUN, X; WANG, Y. D et al.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 2014, Vol 607, pp 206-218, issn 0921-5093, 13 p.Article

Twinning characteristic and variant selection in compression of a pre-side-rolled Mg alloy sheetBO SONG; RENLONG XIN; YINGCHUN LIANG et al.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 2014, Vol 614, pp 106-115, issn 0921-5093, 10 p.Article

Microstructure stability and evolution in CVD carbonyl Ni materials upon annealing - Grain growth and detwinning processCHICHI CHEN; JING LIU; ZHIRUI WANG et al.Materials science & engineering. A, Structural materials : properties, microstructure and processing. 2012, Vol 558, pp 285-297, issn 0921-5093, 13 p.Article

Interfacial Step Structure at a (0001) Basal Twin in Bi2Te3MEDLIN, D. L; YANG, N. Y. C.Journal of electronic materials. 2012, Vol 41, Num 6, pp 1456-1464, issn 0361-5235, 9 p.Conference Paper

Mechanism of twin formation in sputter-grown ZnO/Al2O3(0001) heteroepitaxial filmsKIM, In-Woo; LEE, Kyu-Mann.Thin solid films. 2008, Vol 516, Num 15, pp 4921-4924, issn 0040-6090, 4 p.Article

Surface Morphology and Defect Formation Mechanisms for HgCdTe (211)B Grown by Molecular Beam EpitaxyYONG CHANG; BECKER, C. R; MALLICK, S et al.Journal of electronic materials. 2008, Vol 37, Num 9, pp 1171-1183, issn 0361-5235, 13 p.Conference Paper

Crystallization of diamond crystals and films by microwave assisted CVD. IIBADZIAN, A. R; BADZIAN, T; ROY, R et al.Materials research bulletin. 1988, Vol 23, Num 4, pp 531-548, issn 0025-5408Article

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