Please use this identifier to cite or link to this item: https://hdl.handle.net/10216/146843
Author(s): Antonio Nuno Guerreiro
Beatriz Arouca Maia
Hesham Khalifa
Manuela Carvalho Baptista
Maria Helena Braga
Title: What Differentiates Dielectric Oxides and Solid Electrolytes on the Pathway toward More Efficient Energy Storage?
Issue Date: 2022-11-10
Abstract: Taking advantage of electrode thicknesses well beyond conventional dimensions allowed us to follow the surface plasmonic THz frequency phenomenon with vacuum wavelengths of 100 mu m to 1 mm, only to scrutinize them within millimeters-thicknesses insulators. Here, we analyze an Al/insulator/Cu cell in which the metal electrodes-collectors were separated by a gap that was alternatively filled by SiO2, MgO, Li2O, Na3Zr2Si2PO12-NASICON, Li1.5Al0.5Ge1.5(PO4)(3)-LAGP, and Li2.99Ba0.005ClO-Li+ glass. A comparison was drawn using experimental surface chemical potentials, cyclic voltammetry (I-V plots), impedance spectroscopy, and theoretical approaches such as structure optimization, simulation of the electronic band structures, and work functions. The analysis reveals an unexpected common emergency from the cell's materials to align their surface chemical potential, even in operando when set to discharge under an external resistor of 1842 omega.cm(insulator). A very high capability of the metal electrodes to vary their surface chemical potentials and specific behavior among dielectric oxides and solid electrolytes was identified. Whereas LAGP and Li2O behaved as p-type semiconductors below 40 degrees C at OCV and while set to discharge with a resistor in agreement with the Li+ diffusion direction, NASICON behaved as a quasi n-type semiconductor at OCV, as MgO, and as a quasi p-type semiconductor while set to discharge. The capacity to behave as a p-type semiconductor may be related to the ionic conductivity of the mobile ion. The ferroelectric behavior of Li2.99Ba0.005ClO has shown surface plasmon polariton (SPP) waves in the form of surface propagating solitons, as in complex phenomena, as well as electrodes' surface chemical potentials inversion capabilities (i.e., chi (Al) - chi (Cu) > 0 to chi (Al) - chi (Cu) < 0 vs. E-vacuum = 0 eV) and self-charge (Delta V-cell >= +0.04 V under a 1842 omega.cm(insulator) resistor). The multivalent 5.5 mm thick layer cell filled with Li2.99Ba0.005ClO was the only one to display a potential bulk difference of 1.1 V. The lessons learned in this work may pave the way to understanding and designing more efficient energy harvesting and storage devices.
DOI: 10.3390/batteries8110232
URI: https://hdl.handle.net/10216/146843
Related Information: info:eu-repo/grantAgreement/Agência Nacional de Inovação S.A./P2020|COMPETE - Projetos em Copromoção/POCI-01-0247-FEDER-047728/CAVALI - Cadeia de Valor do Lítio/CAVALI - Cadeia de Valor do Lítio
info:eu-repo/grantAgreement/FCT - Fundação para a Ciência e a Tecnologia/Programa de Financiamento Plurianual de Unidades de I&D/UIDP/50022/2020_ET/LAETA2023 - Programático - ET - Emerging Technologies/LAETA2023 - Programático - ET - Emerging Technologies
info:eu-repo/grantAgreement/FCT - Fundação para a Ciência e a Tecnologia/Projectos de I&DT em Todos os Domínios Científicos/PTDC/QUI-ELT/2593/2021/Redox-active Metal-Organic Frameworks as Electrode Materials for Lithium-Ion Batteries/RedoxMOFs
info:eu-repo/grantAgreement/COMISSÃO EUROPEIA/Sector Skills Alliances/612675-EPP-1-2019-1-SE-EPPKA2-SSA-B/Alliance for Batteries, Training and Skills/ALBATTS
Document Type: Artigo em Revista Científica Internacional
Rights: openAccess
Appears in Collections:FEUP - Artigo em Revista Científica Internacional

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