ASPIRE
Niskodimenzionalni nanomaterijali za skladištenje energije i primenu u senzorima: Inovacije kroz sinergiju delovanja
Low-dimensional nanomaterials for energy storage and sensing applications: Innovation through synergy of action
Akronim / šifra: ASPIRE / 6706
NIO nosilac projekta: Univerzitet u Beogradu - Institut za nuklearne nauke „Vinča“
NIO učesnici projekta: Univerzitet u Beogradu - Tehnički fakultet u Boru
Rukovodilac projekta: Zoran Jovanović, naučni savetnik
Website: https://aspire.rs/
Projekat finansira: Fond za nauku Republike Srbije
Program: PRIZMA
Period realizacije: 2023 - 2026.
[sr] ASPIRE će koristiti različite hemijske i fizičke metode za sintezu, modifikaciju i karakterizaciju nisko-dimenzionih nanomaterijala i njihovih kompozita radi prilagođavanja interakcije između komponenata na atomskom nivou kroz pažljivu kontrolu sastava, strukture, veličine, površinske hemije, morfologije, itd. Kao rezultat toga, razvijaćemo samoodržive uređaje zasnovane na nisko-dimenzionim nanomaterijalima i njihovim kompozitima koji će se koristiti za 24-oro časovno praćenje temperature, vlažnosti i koncentracije gasova u Beogradu.
[en] АSPIRE will use various chemical and physical methods for the synthesis, modification and characterization of LDNMs and their nanocomposites to customize interplay between the components at an atomic level through careful control of composition, structure, size, surface chemistry, morphology, etc. As a result, a self-sustained devices based on LDNMs and тheir nanocomposites will be used for 24/7 monitoring of temperature, humidity and concentration of gases in Belgrade municipality.
Најновије
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Swift heavy ion irradiated thin films of bismuth vanadate for oxygen evolution reaction: Impact of defect engineering and opening of ion tracks
(ECAART 15 : 15th European Conference on Accelerators in Applied Research and Technology : Book of Abstracts, 2025) -
From Ion Tracks to Nanoscale Holes in Oxide Semiconductors: Swift Heavy Ion Engineering of BiVO4 for Solar Water Splitting
(Dubna : Joint Institute for Nuclear Research (JINR), 2025) -
A Novel Co/Zn-Ferrite Molecularly Imprinted Polymer Sensor for Electrochemical Detection of Gallic Acid
(Belgrade : Materials Research Society of Serbia, 2025) -
GO-based nanocomposites with WPA and PTCDA for application in electrochemical supercapacitors
(Belgrade : Materials Research Society of Serbia, 2025) -
PLD-grown thin films of STO on silicon photocathodes for photoelectrochemical hydrogen evolution reaction
(Belgrade : Materials Research Society of Serbia, 2025) -
Determination of Lateral Sizes of Graphene Oxide Nanosheets and Implications for the 2D/Oxides integration
(Belgrade : Materials Research Society of Serbia, 2025) -
Engineering Charge Transfer in PLD-Grown STO Thin Films on Si(001) by an rGO Interlayer for Photoelectrochemical Hydrogen Evolution
(ACS Applied Energy Materials, 2025) -
Influence of synthesis route on the supercapacitor performance of graphene oxide-based composites
(Belgrade : Institute of Technical Sciences of SASA, 2025) -
Interface-engineered STO thin films on silicon photocathodes for photoelectrochemical hydrogen evolution reaction
(Belgrade : Institute of Technical Sciences of SASA, 2025) -
The path to better education of engineers using open data - a practical example in the Republic of Serbia
(Bor : University of Belgrade - Technical Faculty in Bor, 2025) -
Application of Ion Beam Irradiation for Engineering of Graphene Oxide-Based Environmental Sensors
(Belgrade : Materials Research Society of Serbia, 2025) -
Defect engineering and opening of the ion tracks in the swift heavy ion irradiated thin films of bismuth vanadate: Impact on oxygen evolution reaction for solar water splitting
(Belgrade : Materials Research Society of Serbia, 2025) -
Hydrothermal treatment of GO-based nanocomposites for energy storage: New insights into the components’ interaction
(Belgrade : Faculty of Physical Chemistry, 2025) -
Pulsed laser deposition of STO thin films on rGO-protected silicon photocathodes for enhanced photoelectrochemical water splitting
(Belgrade : Faculty of Physical Chemistry, 2025) -
Unraveling the role of Ni and Co deposition on BiVO4 thin films: Surface chemistry insights into enhanced photoelectrochemical water splitting
(Belgrade : Faculty of Physical Chemistry, 2025) -
Tuning the Supercapacitive Properties in Graphene Oxide/Cobalt Ferrite Nanocomposites by Synthesis Routes
(Belgrade : Faculty of Physical Chemistry, 2025) -
Influence of Ligand Exchange and Heteroatom Substitution on Surface Chemistry of Cobalt Ferrite Nanoparticles
(Belgrade : Faculty of Physical Chemistry, 2025) -
Exploring the Impact of Zn Substitution on the Physicochemical Properties of Cobalt Ferrite Nanoparticles
(Journal of Physical Chemistry C, 2025)
