P. A. Enkvist, T. Naucler, and J. Rosander, A cost curve for greenhouse gas reduction, 2007.

G. Verbeeck and H. Hens, Energy savings in retrofitted dwellings: economically viable? Energy & Building, 2004.

M. Koebel, A. Rigaccci, and P. Achard, Aerogels for Superinsulation: A Synoptic View, Aegerter, N. Leventis, and M. Koebel, 2011.
DOI : 10.1007/978-1-4419-7589-8_26

URL : https://hal.archives-ouvertes.fr/hal-00800575

S. Barbero, D. Marco, C. Ferrua, and A. Pereno, Analysis on existent thermal insulating plasters towards innovative applications: Evaluation methodology for a real cost-performance comparison, Energy and Buildings, vol.77, pp.40-47, 2014.
DOI : 10.1016/j.enbuild.2014.03.037

P. Achard, A. Rigacci, T. Echantillac, A. Bellet, M. Aulagnier et al., Enduit isolant à base de xerogel de silice, 2011.
URL : https://hal.archives-ouvertes.fr/hal-00800396

M. Ibrahim, P. H. Biwole, E. Wurtz, and P. Achard, A study on the thermal performance of exterior walls covered with a recently patented silica-aerogel-based insulating coating, Building and Environment, vol.81, pp.112-122, 2014.
DOI : 10.1016/j.buildenv.2014.06.017

URL : https://hal.archives-ouvertes.fr/hal-01045072

M. Ibrahim, P. Achard, E. Wurtz, and P. Biwolé, Optimizing insulation-thermal mass wall layer distribution from maximum time lag and minimum decrement factor point of view Thermal performance of building materials and products -Determination of thermal resistance by means of guarded hot plate and heat flow meter methods -Products of high and medium thermal resistance. [11] NF EN 1159-3. Advanced technical ceramics -Ceramic composites, thermophysical properties -Part 3: determination of specific heat capacity. [12] NF EN 1602 standard. Thermal insulating products for building applications -Determination of the apparent density, Proceedings of BS (2013): 13th Conference of the International Building Performance Simulation Association [10] NF EN 12667, pp.52-64, 1931.

M. Ibrahim, P. H. Biwole, E. Wurtz, and P. Achard, Limiting windows offset thermal bridge losses using a new insulating coating, Applied Energy, vol.123, pp.220-243, 2013.
DOI : 10.1016/j.apenergy.2014.02.043

URL : https://hal.archives-ouvertes.fr/hal-00968818

T. Kalamees, J. Vinha-mantha, P. Arena, L. B. Delgado, N. Ramos et al., Hygrothermal calculations and laboratory tests on timberframed wall structures A Systematic Approach to Hygrothermal Modeling and Compliance With Failure Criteria Using WUFI® A critical review of hygrothermal models used in porous building materials, 5th National Conference of IBPSA-USA, pp.689-697, 2003.

D. Allinson, M. H. Antretter, F. Sauer, T. Schopfer, and A. Holm, Hygrothermal analysis of a stabilized rammed earth test building in the UK. Energy and Buildings Validation of a hygrothermal whole building simulation software, 12th Conference of International Building Performance Simulation Association, pp.845-852, 2010.