LEADER 04689nam 2201417z- 450 001 9910595075403321 005 20231214133256.0 035 $a(CKB)5680000000080772 035 $a(oapen)https://directory.doabooks.org/handle/20.500.12854/92083 035 $a(EXLCZ)995680000000080772 100 $a20202209d2022 |y 0 101 0 $aeng 135 $aurmn|---annan 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 10$aMultifunctional Nanomaterials for Energy Applications 210 $aBasel$cMDPI Books$d2022 215 $a1 electronic resource (302 p.) 311 $a3-0365-4917-X 311 $a3-0365-4918-8 330 $aThe rapid growth of the world's population has significantly increased energy consumption and environmental impact. The transition from fossil fuels to sustainable energy sources that is needed for a sustainable future demands more efficient materials and improved technologies, but allows us to tackle this great and necessary challenge. This Special Issue highlights some of the latest energy advances in the field of materials, in particular low-dimensional materials, and nanostructured materials. Various topics related to synthesis and characterization methods, properties, and energy application uses are highlighted. 606 $aResearch & information: general$2bicssc 606 $aPhysics$2bicssc 610 $aperitectic compound Li4(OH)3Br 610 $aphase change materials 610 $athermal energy storage 610 $ashape stabilized composites 610 $asupporting materials 610 $aoxides 610 $acolloidal lithography 610 $athin-film photovoltaics 610 $aphotonics 610 $alight-trapping 610 $aself-cleaning 610 $agraphene 610 $atriboelectric nanogenerator 610 $acharge trapping layer 610 $aflexible 610 $astability 610 $aenergy harvesting 610 $asolar cells 610 $aparameter extraction 610 $asingle diode model 610 $anon-iterative 610 $asodium borohydride 610 $ahydrolysis 610 $aporous carbon 610 $aCo nanoparticles 610 $adurability 610 $aTi-MOFs 610 $aamine functionalization 610 $aCO2 capture 610 $aseparation 610 $abreakthrough experiment 610 $acarbon nanotube 610 $aplastic 610 $achemical recycling 610 $alife cycle assessment 610 $aethernet 610 $acircular economy 610 $adata transmission 610 $acarbon footprint 610 $aBaF2 nanophase 610 $aoxyfluoride nano-glass-ceramics 610 $aTb3+/Eu3+ energy transfer 610 $asol-gel chemistry 610 $ananocellulose 610 $aionic liquid 610 $aionogel 610 $agel polymer electrolyte 610 $arenewable energy storage 610 $asupercapacitors 610 $aTi2SnC 610 $aM2AX 610 $apowders 610 $athin films 610 $aSTEM 610 $ananoindentation 610 $azinc-ion supercapacitor 610 $athree-dimensional vertically aligned graphene 610 $apolydopamine 610 $ahighly concentrated salt electrolyte 610 $amini-jets 610 $adiffuse discharge 610 $aspark discharge 610 $ared sprites 610 $ablue jets 610 $aghosts 610 $aAtomic Force Microscopy 610 $aElectrochemical Strain Microscopy 610 $ahybrid electrolyte 610 $aEnergy Storage 610 $alithium transport 610 $alithium distribution 610 $aall-solid-state electrolytes 610 $adiffusion 610 $aferric ion sensor 610 $aMOF 610 $afinite difference 610 $acomposite materials 610 $aMn3O4-CeO2-rGO 610 $ananocatalyst 610 $amethanol oxidation 610 $acyclic voltammetry 610 $acellulose nanocrystal 610 $asurface functionalization 610 $aconductive electrodes 610 $aenergy storage 615 7$aResearch & information: general 615 7$aPhysics 700 $aCesano$b Federico$4edt$01309566 702 $aRackauskas$b Simas$4edt 702 $aUddin$b Mohammed$4edt 702 $aCesano$b Federico$4oth 702 $aRackauskas$b Simas$4oth 702 $aUddin$b Mohammed$4oth 906 $aBOOK 912 $a9910595075403321 996 $aMultifunctional Nanomaterials for Energy Applications$93030225 997 $aUNINA