Exact(3)
The existence and uniqueness of the generalized solutions for the boundary value problems in elasticity of initially stressed bodies with voids (porous materials) are proved (Marin 2008).
The materials are proved having much better adsorption capacity than the other adsorbents with room temperature and low CO2 concentration (⩽1.0% in volume), and they can meet the aerospace requirements.
Mesoporous materials are proved to be good candidates for gas sensing purposes as well as for many other applications such as environmentally friendly fuels [1], new generation optical devices [2], biochemical separations, bioactivity control for medical applications [3], catalytic adsorption, and molecular sieves [4 6], which have been reported so far.
Similar(57)
Unlike modern buildings, traditional building materials are proven to be earth conscious and have nearly zero carbon footprints.
These new generation materials are proving to be much better than their earlier counterparts because of their excellent biomimetic properties, which are reflected in their healthy interactions with cells and tissues.
In addition, carbon-composite materials are proving to be a robust, inexpensive and active electrocatalysts, where the synergetic effect between the carbon nanomaterials and the ceramic or polymer nanostructures can lead to a superior electrocatalytic performance and durability for low temperature fuel cells.
This behavior of BPB-related materials is proved by in situ resistance measurements of its ohmic response [40].
The use of these materials was proved to be economical, environmentally sound and effective in increasing the performance properties of the asphalt mixture in recent years.
These materials were proved successful for establishment of rat pheochromocytoma cell (PC-12), Human neuroblastoma cells (SH-SY5Y), Human epithelial carcinoma cells (HeLa), and Human embryonic kidney cells (HEK-293T) on the metal electrode surfaces [3, 4, 10, 11].
The materials were proven additionally to exhibit a strong affinity to water, which was investigated by simple water absorption tests.
The synthesized PVA/TEOS/AgNps materials were proven to be efficient for use in tissue engineering applications since they exhibit low cytotoxicity and sufficient cell adhesion.
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