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It demonstrates that the proposed empirical law concerning the trap engineering is indeed valid and the NaLuGeO4 Bi3+,Cr3+ material is potential for photodynamic therapy.
Although 1D carbonaceous material is potential as novel nanofiber ER fluids, it should point out that the suspension durability or dispersion stability is still a challenge due to the facile aggregation of 1D carbon nanomaterial.
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These results show that these materials are potential candidates for applications in post-combustion CO2 capture and separation.
Results suggest that these materials are potential candidates for designing efficient optical limiters with applications in laser safety devices.
These materials are potential candidates for the large-scale fabrication of flexible electrical and optical nano-devices.
The lowest π π∗ transition energy predicted for an infinite generation dendrimer is 2.08 eV indicating that these materials are potential candidates to be used in optoelectronics.
Both inorganic and hybrid (organo-inorganic) perovskite materials are potential candidates as photocatalysts for use in both photovoltaic (PV) and photocatalytic water splitting applications.
Thermoelectric materials are potential candidates for harvesting green energy, due to their ability to generate voltage upon exposure to a temperature difference.
Carbon materials are potential electrode materials in new energy devices such as solar cells, fuel cells, Li-ion batteries, and supercapacitors, because of their distinct advantages including low cost, high surface area, and high electric conductivity.
The electrochemical stability window is found to be in the range of 0 5 V, which ensures that hybrid organic inorganic materials are potential electrolytes for solid-state rechargeable lithium ion batteries.
Hydride-forming materials are potential candidates for safe and high-density storage of hydrogen and among them; Mg-based alloys are the most investigated ones due to their high gravimetric capacity.
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