M. Thierry, Modélisation de la carbonatation atmosphérique des matériaux cimentaires, p.347, 2005.

I. Comby-peyrot, Développement et validation d'un outil numérique tridimensionnel pour décrire l'endommagement et la fissuration causés par la réaction alcali-silice dans les structures en béton, ENSMP -CEMEF, p.233, 2006.

V. G. Papadakis, C. G. Vayenas, and M. N. Fardis, Physical and chemical characteristics affecting the durability of concrete, ACI Materials Journal, vol.88, issue.2, pp.186-196, 1991.

V. Baroghel-bouny, Which toolkit for durability evaluation as regards chloride ingress into concrete? Part II: Development of a performance approach based on durability indicators and monitoring parameters, Third International RILEM Workshop on Testing and Modelling Chloride Ingress into Concrete, 2004.
DOI : 10.1617/2912143578.009

D. N. Winslow, M. D. Cohen, D. P. Bentz, K. A. Snyder, and E. J. Garboczi, Percolation and pore structure in mortars and concrete, Cement and Concrete Research, vol.24, issue.1, pp.25-37, 1994.
DOI : 10.1016/0008-8846(94)90079-5

S. Diamond, Mercury porosimetry, Cement and Concrete Research, vol.30, issue.10, pp.1517-1525, 2000.
DOI : 10.1016/S0008-8846(00)00370-7

V. Baroghel-bouny, Caractérisation des pâtes de ciment et des bétons, pp.174-179, 1994.

A. J. Allen, C. G. Windsor, V. S. Rainey, D. Pearson, D. D. Double et al., A small-angle neutron scattering study of cement porosities, Journal of Physics D: Applied Physics, vol.15, issue.9, pp.1817-1833, 1982.
DOI : 10.1088/0022-3727/15/9/027

Q. F. Zhou, C. Sharp, J. M. Cannata, K. K. Shung, G. H. Feng et al., Self-focused high frequency ultrasonic transducers based on ZnO piezoelectric films, Applied Physics Letters, vol.90, issue.11, p.113502, 2007.
DOI : 10.1063/1.2712813

P. Rey, M. Salhi, S. Giroud, P. Robert, C. Lagahe-blanchard et al., New manufacturing method for capacitive ultrasonic transducers with monocrystalline membrane, IEEE 20th Conf. on Micro Electro Mechanical Systems, pp.581-584, 2007.

H. B. Peng, C. W. Chang, S. Aloni, T. D. Yuzvinsky, and A. Zettl, Ultrahigh Frequency Nanotube Resonators, Physical Review Letters, vol.97, issue.8, p.87203, 2006.
DOI : 10.1103/PhysRevLett.97.087203

B. Lebental and A. Ghis, Cellule CMUT formée d'une membrane de nanotubes ou de nanofils ou de nanopoutres et dispositif d'imagerie acoustique ultra haute fréquence comprenant une pluralité de telles cellules, 2008.

E. Colinet, C. Durand, P. Audebert, P. Renaux, D. Mercier et al., Measurement of Nano-Displacement Based on In-Plane Suspended-Gate MOSFET Detection Compatible with a Front-End CMOS Process, 2008 IEEE International Solid-State Circuits Conference, Digest of Technical Papers, pp.332-333, 2008.
DOI : 10.1109/ISSCC.2008.4523192/mm1

J. S. Bunch, S. S. Verbridge, J. S. Alden, A. M. Van-der-zande, J. M. Parpia et al., Impermeable Atomic Membranes from Graphene Sheets, Nano Letters, vol.8, issue.8, pp.2458-2464, 2008.
DOI : 10.1021/nl801457b

URL : http://arxiv.org/abs/0805.3309

B. Lebental, A. Ghis, and E. Delevoye, Procédé et dispositif d'analyse acoustique de microporosites dans un matériau tel que le béton à l'aide d'une pluralité de transducteurs CMUTS incorporés dans le matériau, 2008.