A. P. Sutton and R. W. Balluffi, Interfaces in crystalline materials, 1995.

J. M. Howe, Interfaces in Materials: Atomic structure, kinetics and thermodynamics of solid-vapor, solidliquid and solid-solid Interfaces, 1997.

J. M. Howe, Structure, composition and energy of solid-solid interfaces, pp.1317-1451, 2014.

J. W. Christian, The theory of transformation in metals and alloys, 1975.

W. Z. Zhang and G. C. Weatherly, On the crystallography of precipitation, Prog. Mater. Sci, vol.50, pp.181-292, 2005.

J. F. Nie, Crystallography and migration mechanisms of planar interphase boundaries, Acta Mater, vol.52, pp.795-807, 2004.

M. W. Braun and J. H. , Van Der Merwe, Reciprocal-space formulation and prediction of misfit accommodation in rigid and strained epitaxial systems, Metall. Mater. Trans. A, vol.33, pp.2485-2494, 2002.

M. X. Zhang and P. M. Kelly, Crystallographic features of phase transformations in solids, Prog. Mater. Sci, vol.54, pp.1101-1170, 2009.

U. Dahmen, Orientation relationships in precipitation systems, Acta Metall, vol.30, pp.63-73, 1982.

G. S. Rohrer, Grain boundary energy anisotropy: a review, J. Mater. Sci, vol.46, pp.5881-5895, 2011.

D. Chatain, P. Wynblatt, A. D. Rollett, and G. S. Rohrer, Importance of interfacial step alignment in heteroepitaxy and orientation relationships: the case of Ag equilibrated on Ni substrates. Part 2 experiments, J. Mater. Sci, vol.50, pp.5276-5285, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01162456

P. Wynblatt and D. Chatain, Importance of interfacial step alignment in hetero-epitaxy and orientation relationships: the case of Ag equilibrated on Ni substrates. Part 1 computer simulations, J. Mater. Sci, vol.50, pp.5262-5275, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01162456

F. C. Frank, Martensite, Acta Metall, vol.1, pp.15-21, 1953.

Y. Garreau, A. Coati, A. Zobelli, and J. Creuze, Magic" heteroepitaxial growth on vicinal surfaces, Phys. Rev. Lett, vol.91, p.116101, 2003.

A. Bellec, Y. Garreau, J. Creuze, A. Vlad, F. Picca et al., Ag on a Ni vicinal surface: Coupling Stranski-Krastanov and "magic" heteroepitaxial growth, Phys. Rev. B, vol.96, p.85414, 2017.

Y. Zhang, A. M. Schultz, L. Li, H. Chien, P. A. Salvador et al., Combinatorial substrate epitaxy: A high-throughput method for determining phase and orientation relationships and its application to BiFeO 3 /TiO 2 heterostructures, Acta Mater, vol.60, pp.6486-6493, 2012.

N. V. Burbure, P. A. Salvador, and G. S. Rohrer, Orientation and phase relationships between titania films and polycrystalline BaTiO 3 substrates as determined by electron backscatter diffraction mapping, J. Am. Ceram. Soc, vol.93, pp.2530-2533, 2010.

J. Wittkamper, Z. Xu, B. Kombaiah, F. Ram, M. De-graef et al., Competitive growth of scrutinyite (?-PbO 2 ) and rutile polymorphs of SnO 2 on all orientations of columbite CoNb 2 O 6 substrates, Cryst. Growth & Des, vol.17, pp.3929-3939, 2017.

S. M. Foiles, M. I. Baskes, and M. S. Daw, Embedded-atom-method functions for the FCC metals Cu, Ag, Au, Ni, Pd, Pt, and their alloys, Phys. Rev. B, vol.33, pp.7983-7991, 1986.

P. Wynblatt and D. Chatain, Two-dimensional versus three-dimensional constraints in heteroepitaxy/orientation relationships, J. Mater. Sci, vol.52, pp.9630-9639, 2017.

R. C. Pond, D. L. Medlin, and A. Serra, A study of the accommodation of coherency strain by interfacial defects at a grain boundary in gold, Philos. Mag, vol.86, pp.4667-4684, 2006.
URL : https://hal.archives-ouvertes.fr/hal-00513696

G. S. Rohrer, Structure and bonding in crystalline materials, 2001.
DOI : 10.1017/cbo9780511816116

P. M. Kelly and M. X. Zhang, Edge-to-edge matching-the fundamentals, Metall. Mater. Trans. A, vol.37, pp.833-839, 2006.
DOI : 10.1007/s11661-006-0056-4

W. Z. Zhang and G. R. Purdy, O-lattice analyses of interfacial misfit. I. General considerations, Philos. Mag. A, vol.68, pp.279-290, 1993.
DOI : 10.1080/01418619308221205

W. Z. Zhang and G. R. Purdy, O-lattice analyses of interfacial misfit. II. Systems containing invariant lines, Philos. Mag. A, vol.68, pp.291-303, 1993.
DOI : 10.1080/01418619308221205

U. Dahmen, Split reflections from broken mirrors: Symmetry-breaking in the making of materials microstructures, pp.6-11, 1992.

I. N. Stranski, Zur Theorie des Kristallwachstums, Z. Phys. Chem, vol.136, pp.259-278, 1928.

M. A. Van-hove and G. A. Somorjai, A new microfacet notation for high-Miller-index surfaces of cubic materials with terrace, step and kink structures, Surf. Sci, vol.92, pp.489-518, 1980.

R. V. Zucker, D. Chatain, U. Dahmen, S. Hagège, and W. C. Carter, New software tools for the calculation and display of isolated and attached interfacial-energy minimizing particle shapes, J. Mater. Sci, vol.47, pp.8290-8302, 2012.
URL : https://hal.archives-ouvertes.fr/hal-00773474

A. Kelly, G. W. Groves, and P. Kidd, Crystallography and crystal defects, 2000.

S. Q. Xiao and J. M. Howe, Analysis of a two-dimensional invariant line interface for the case of a general transformation strain and application to thin-film interfaces, Acta Mater, vol.48, pp.3253-3260, 2000.

J. W. Christian, Lattice correspondence, atomic site correspondence and shape change in "diffusionaldisplacive" phase transformations, pp.101-108, 1997.
DOI : 10.1016/s0079-6425(97)00009-1

U. Dahmen, A comparison between three simple crystallographic principles of precipitate morphology, Metall. Mater. Trans. A, vol.25, pp.1857-1863, 1994.

P. Y. Hsiao, Z. H. Tsai, J. H. Huang, and G. P. Yu, Strong asymmetric effect of lattice mismatch on epilayer structure in thin film deposition, Phys. Rev. B, vol.79, p.155414, 2009.

R. C. Pond, S. Celotto, and J. P. Hirth, A comparison of the phenomenological theory of martensitic transformations with a model based on interfacial defects, Acta Materialia, vol.51, pp.5385-5398, 2003.

C. M. Wayman, Introduction to the Crystallography of Martensitic Transformations, 1964.

F. Ernst, M. W. Finnis, D. Hofmann, T. Muschik, U. Schonberger et al., Theoretical prediction and direct observation of the 9R structure in Ag, Phys. Rev. Lett, vol.69, pp.620-623, 1992.

Y. Gao, P. G. Shewmon, and S. A. Dregia, Investigation of low-energy interphase boundaries in Ag/Ni by computer simulation and crystallite rotation, Acta Metall, vol.37, pp.3165-3175, 1989.

D. Wolf, Atomic-level geometry of crystalline interfaces, Materials Interfaces, pp.1-57, 1992.

A. R. Gautam and J. M. Howe, A method to predict the orientation relationship, interface planes and morphology between a crystalline precipitate and matrix: part II-application, Philos. Mag, vol.93, pp.3472-3490, 2013.