High-performance nano insulation materials (Hi-Per NIM) may be developed by exploiting the Knudsen effect for reduced thermal conductivity and thus make thermal insulation materials with a nanoporous air-filled structure. Hence, these NIMs are supposed to maintain their thermally insulating properties with nanopores filled with air at atmospheric pressure. NIMs with very low thermal conductivity values will enable the use of normal or thin wall thicknesses in energy-efficient buildings. Very thick building envelopes are not desirable due to several reasons, e.g. considering space issues with respect to both economy, floor area, transport volumes, architectural restrictions and other limitations, material usage and existing building techniqu...
The application of manufactured nanomaterials provides not only advantages resulting from their uniq...
Buildings constitute a very large part of the total energy consumption in the world. In order to avo...
The article offers an analysis of the use of nanotechnological insulation materials (NIMs) for energ...
As the world's focus is turned even stronger toward miscellaneous energy efficiency and saving aspec...
Increased attention is given to the global energy use and emissions of greenhouse gases (GHG) since ...
Initiatives to incorporate energy efficiency measures and strategies in the building sector have gai...
The chapter focuses on the application of nanotechnology to building insulation material industry in...
Hollow silica nanospheres (HSNS) have been the subject of intense studies as a possible building blo...
Hollow silica nanospheres (HSNS) show a promising potential to become good thermal insulators with l...
Nanotechnology and possibilities for the thermal building insulation materials of tomorrow are explo...
State-of-the-art thermal insulation solutions like vacuum insulation panels (VIP) and aerogels have ...
The advanced thermal insulation materials and solutions for improved thermal resistance have been re...
Nanotechnology is widely being used in the built environment for its advantages in many improved en...
AbstractNowadays sustainable development plays a vital role in management. One of the basic policies...
The demand for zero emission buildings (ZEB) and energy-producing buildings is increasing along with...
The application of manufactured nanomaterials provides not only advantages resulting from their uniq...
Buildings constitute a very large part of the total energy consumption in the world. In order to avo...
The article offers an analysis of the use of nanotechnological insulation materials (NIMs) for energ...
As the world's focus is turned even stronger toward miscellaneous energy efficiency and saving aspec...
Increased attention is given to the global energy use and emissions of greenhouse gases (GHG) since ...
Initiatives to incorporate energy efficiency measures and strategies in the building sector have gai...
The chapter focuses on the application of nanotechnology to building insulation material industry in...
Hollow silica nanospheres (HSNS) have been the subject of intense studies as a possible building blo...
Hollow silica nanospheres (HSNS) show a promising potential to become good thermal insulators with l...
Nanotechnology and possibilities for the thermal building insulation materials of tomorrow are explo...
State-of-the-art thermal insulation solutions like vacuum insulation panels (VIP) and aerogels have ...
The advanced thermal insulation materials and solutions for improved thermal resistance have been re...
Nanotechnology is widely being used in the built environment for its advantages in many improved en...
AbstractNowadays sustainable development plays a vital role in management. One of the basic policies...
The demand for zero emission buildings (ZEB) and energy-producing buildings is increasing along with...
The application of manufactured nanomaterials provides not only advantages resulting from their uniq...
Buildings constitute a very large part of the total energy consumption in the world. In order to avo...
The article offers an analysis of the use of nanotechnological insulation materials (NIMs) for energ...