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Enhancement of freezing tolerance of olive leaves by foliar application of methyl jasmonate and 24-epibrassinolide through changes in some metabolites and antioxidant activity
Enhancement of freezing tolerance of olive leaves by foliar application of methyl jasmonate and 24-epibrassinolide through changes in some metabolites and antioxidant activity
Enhancement of freezing tolerance of olive leaves by foliar application of methyl jasmonate and 24-epibrassinolide through changes in some metabolites and antioxidant activity
Electrospun PEO nanofibrous membrane enable by LiCl, LiClO4, and LiTFSI salts: a versatile solvent-free electrolyte for lithium-ion battery application
Electrospun PEO nanofibrous membrane enable by LiCl, LiClO4, and LiTFSI salts: a versatile solvent-free electrolyte for lithium-ion battery application
Electrospun PEO nanofibrous membrane enable by LiCl, LiClO4, and LiTFSI salts: a versatile solvent-free electrolyte for lithium-ion battery application
Controllable and facile one-pot synthesis of high surface area amorphous, crystalline, and triphasic TiO<sub>2</sub>: catalytic and photocatalytic applications
Controllable and facile one-pot synthesis of high surface area amorphous, crystalline, and triphasic TiO<sub>2</sub>: catalytic and photocatalytic applications
Electro-conductive nanofibrous structure based on PGS/ PCL coated with PPy by in situ chemical polymerization applicable as cardiac patch: Fabrication and optimization
Electro-conductive nanofibrous structure based on PGS/ PCL coated with PPy by in situ chemical polymerization applicable as cardiac patch: Fabrication and optimization
Evaluating the Tribological and Mechanical Properties of Filament Wound Composite Incorporated with PTFE Fibers and Tungsten Carbide Filler Applicable for Self-Lubricating Bearings
Evaluating the Tribological and Mechanical Properties of Filament Wound Composite Incorporated with PTFE Fibers and Tungsten Carbide Filler Applicable for Self-Lubricating Bearings
Morphology control of polyaniline nanostructures on the surface of reduced graphene oxide/cotton fabric composite electrode for high-performance wearable supercapacitor application
Morphology control of polyaniline nanostructures on the surface of reduced graphene oxide/cotton fabric composite electrode for high-performance wearable supercapacitor application
Morphology control of polyaniline nanostructures on the surface of reduced graphene oxide/cotton fabric composite electrode for high-performance wearable supercapacitor application