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Modern medicine uses a variety of this material as potential blood substitutes, e.g., polyamidoamine dendrimers [57].
Thermally driven convection of solid satellite material as potential cause of surface evolution is considered for two cases: non-differentiated icy-mineral satellites and differentiated satellites with icy mantle and rocky core.
Among the various nano-structured materials, due to their direct and wide energy bandgap (3.37 eV), ZnO nanorods (NRs) are a promising functional material as potential candidates for short-wavelength optoelectronics applications such as nanoscale lasers [3], light-emitting diodes [4], and ultraviolet (UV) photodetectors (PDs) [5 9].
Eight novel silicate, phosphate and borate glass compositions (coded as NCLx, where x = 1 to 8), containing different oxides (i.e. MgO, MnO2, Al2O3, CaF2, Fe2O3, ZnO, CuO, Cr2O3) were designed and evaluated alongside apatite-wollastonite (used as comparison material), as potential biomaterials for bone tissue repair and regeneration.
In this study, using an ultracentrifugation method, we focussed on miRNAs that are circulating freely in the plasma unbound to cellular material as potential biomarkers for ovarian cancer detection and outcome.
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This review aims at providing more insight into these polycationic oxide materials as potential electrode materials for supercapacitor.
One potential method of overcoming this limitation is the use of ordered mesoporous silica materials as potential antioxidant enzyme nanocarriers.
Nitrogen containing organic materials as potential candidates for CO2 capture is examined by using various density functional methods.
All the gathered evidences qualify these materials as potential candidates to be used as nanocarriers for intra-cellular delivery of protein and other biomolecular drugs.
This chapter provides an overview of recent developments of functionalized and doped carbon-based materials as potential metal-free catalysts in several fields of application.
Recent advances in polymer layered silicate nanocomposites especially improve flammability resistance; encourage the examination of this unique class of evolving materials as potential ablatives.
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ingredients as potential
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material as powerful
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com