Physics, Chemistry and Application of Nanostructures 2017
DOI: 10.1142/9789813224537_0059
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Experimental Evidence for Chemo-Electronic Conversion of Water Adsorption on the Surface of Nanosized Yttria-Stabilized Zirconia

Abstract: Direct energy conversion techniques are now dominated by photovoltaics. But, this dominance will be soon challenged by the emergence of a new conversion methods, known as so called "chemovoltaic". Here we demonstrate the possibility of the electric energy generation through interactions of atmospheric moisture and ZrO 2 based nano

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Cited by 8 publications
(12 citation statements)
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References 7 publications
(9 reference statements)
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“…The thermodynamic approach allows us to draw another important conclusion about the mechanism of T-M transformation in nanoparticles: for it to be realized, it is necessary to change the surface energy of the nanoparticle significantly. The probable mechanisms of this process are associated with a change in the physicochemical and electronic properties of the surface of nanoparticles by adsorbates (OHgroups) (Adsorption mechanism of T-M phase transformation [7][8]12]). Estimates of the corresponding structural parameters (level of microstresses, sizes of unit cells, etc.)…”
Section: Resultsmentioning
confidence: 99%
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“…The thermodynamic approach allows us to draw another important conclusion about the mechanism of T-M transformation in nanoparticles: for it to be realized, it is necessary to change the surface energy of the nanoparticle significantly. The probable mechanisms of this process are associated with a change in the physicochemical and electronic properties of the surface of nanoparticles by adsorbates (OHgroups) (Adsorption mechanism of T-M phase transformation [7][8]12]). Estimates of the corresponding structural parameters (level of microstresses, sizes of unit cells, etc.)…”
Section: Resultsmentioning
confidence: 99%
“…Thus, Raman spectroscopy confirmed neutron and X-ray diffractions data about adsorption-induced formation of the monoclinic phase in ZrO2-3mol%Y2O3 nanopowders. A probable mechanism of tetragonal-monoclinic phase transformation in ZrO2-nanoparticles was discussed in [7][8] and is showed schematically on Fig. 5.…”
Section: Discussionmentioning
confidence: 99%
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“…The only energy consumption present to this system is a periodical electric pumping of this water from the basement to the ceilings. At the new system of recovering energy from humidity, the maximum power density produced by investigated tablets was estimated around 10 nW/cm 2 [5] but by increasing the density of the ZrO 2 this could arrive up to 1 W/m 2 . In Europe, it has been estimated that around 1.4 million GWh/year can be saved and 400 million tons of CO 2 emissions avoided, in buildings and in industrial sectors by more extensive use of heat and cold storage [6].…”
Section: Introductionmentioning
confidence: 96%
“…The new system of energy recovery using humidity, presents the possibility of generating electric energy through conversion of moisture adsorption energy on the surface of ZrO2 based on nanopowder systems into electrical charges. Investigated tablets were estimated to produce a maximum power density of about 10 nW/cm 2 [5], developed in the HUNTER project that now is used in the SSHARE project [8].This project is a collaboration of researchers from Portugal, Spain, Ukraine, Belarus, Tajikistan, Uzbekistan, Azerbaijan and the Joint Institute for Nuclear Research Russian Federation. The water is used for storage of energy during the year due to the high specific heat.…”
Section: Introductionmentioning
confidence: 99%