Double layer capacitors in dye sensitized solar cells with large charge and energy storage capacity and controlled shape of output voltage signals
The output signals in natural dyes-based solar cells (DSSC) can be either rising or decaying depending on the type of ions present in the system; these ions called added ions, are introduced by the additives: mordant and brighteners. The photon-dye interaction produces electrons, which eventually re...
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Published in | PloS one Vol. 19; no. 5; p. e0298776 |
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Language | English |
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28.05.2024
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Abstract | The output signals in natural dyes-based solar cells (DSSC) can be either rising or decaying depending on the type of ions present in the system; these ions called added ions, are introduced by the additives: mordant and brighteners. The photon-dye interaction produces electrons, which eventually reach the electrode giving place to a superficially charged electrode in contact with an electrolyte where are the added ions. This combination produces, automatically, an electrical double-layer EDL structure which has important effects on the performance of the system: a) the added ions control, to a large extent, the initial shape of the output signal, giving rise to rising or decaying profiles; b) it is possible to store large amounts of energy and charge at high electric fields. This structure is found in many other systems that have a surface charged in contact with an electrolyte like piezoelectric materials in human body. This assertion was supported by determining important parameters such as the force between charged surfaces on both sides of the interface, the charge density, the energy density, and the capacitance. The Debye length has very small values then, many important quantities depend on this; it is possible to obtain large values for energy UDL ~ 3.6x105 Jm-3 and charge density ρDL ≈ 1.1x107 Cm-3 for double layer capacitors; these values are orders of magnitude larger than the corresponding values for electrostatic capacitors: Uelec ≈ 4.5x10-3 Jm-3 and ρelec ≈ 1.2 Cm-3. A non-linear model was also developed to fit unstable oscillations found in the output profiles produced by abrupt lighting. |
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AbstractList | The output signals in natural dyes-based solar cells (DSSC) can be either rising or decaying depending on the type of ions present in the system; these ions called added ions, are introduced by the additives: mordant and brighteners. The photon-dye interaction produces electrons, which eventually reach the electrode giving place to a superficially charged electrode in contact with an electrolyte where are the added ions. This combination produces, automatically, an electrical double-layer EDL structure which has important effects on the performance of the system: a) the added ions control, to a large extent, the initial shape of the output signal, giving rise to rising or decaying profiles; b) it is possible to store large amounts of energy and charge at high electric fields. This structure is found in many other systems that have a surface charged in contact with an electrolyte like piezoelectric materials in human body. This assertion was supported by determining important parameters such as the force between charged surfaces on both sides of the interface, the charge density, the energy density, and the capacitance. The Debye length has very small values then, many important quantities depend on this; it is possible to obtain large values for energy UDL ~ 3.6x105 Jm-3 and charge density ρDL ≈ 1.1x107 Cm-3 for double layer capacitors; these values are orders of magnitude larger than the corresponding values for electrostatic capacitors: Uelec ≈ 4.5x10-3 Jm-3 and ρelec ≈ 1.2 Cm-3. A non-linear model was also developed to fit unstable oscillations found in the output profiles produced by abrupt lighting. The output signals in natural dyes-based solar cells (DSSC) can be either rising or decaying depending on the type of ions present in the system; these ions called added ions, are introduced by the additives: mordant and brighteners. The photon-dye interaction produces electrons, which eventually reach the electrode giving place to a superficially charged electrode in contact with an electrolyte where are the added ions. This combination produces, automatically, an electrical double-layer EDL structure which has important effects on the performance of the system: a) the added ions control, to a large extent, the initial shape of the output signal, giving rise to rising or decaying profiles; b) it is possible to store large amounts of energy and charge at high electric fields. This structure is found in many other systems that have a surface charged in contact with an electrolyte like piezoelectric materials in human body. This assertion was supported by determining important parameters such as the force between charged surfaces on both sides of the interface, the charge density, the energy density, and the capacitance. The Debye length has very small values then, many important quantities depend on this; it is possible to obtain large values for energy U DL ~ 3.6x10 5 Jm -3 and charge density ρ DL ≈ 1.1x10 7 Cm -3 for double layer capacitors; these values are orders of magnitude larger than the corresponding values for electrostatic capacitors: U elec ≈ 4.5x10 -3 Jm -3 and ρ elec ≈ 1.2 Cm -3 . A non-linear model was also developed to fit unstable oscillations found in the output profiles produced by abrupt lighting. The output signals in natural dyes-based solar cells (DSSC) can be either rising or decaying depending on the type of ions present in the system; these ions called added ions, are introduced by the additives: mordant and brighteners. The photon-dye interaction produces electrons, which eventually reach the electrode giving place to a superficially charged electrode in contact with an electrolyte where are the added ions. This combination produces, automatically, an electrical double-layer EDL structure which has important effects on the performance of the system: a) the added ions control, to a large extent, the initial shape of the output signal, giving rise to rising or decaying profiles; b) it is possible to store large amounts of energy and charge at high electric fields. This structure is found in many other systems that have a surface charged in contact with an electrolyte like piezoelectric materials in human body. This assertion was supported by determining important parameters such as the force between charged surfaces on both sides of the interface, the charge density, the energy density, and the capacitance. The Debye length has very small values then, many important quantities depend on this; it is possible to obtain large values for energy U.sub.DL ~ 3.6x10.sup.5 Jm.sup.-3 and charge density [rho].sub.DL [almost equal to] 1.1x10.sup.7 Cm.sup.-3 for double layer capacitors; these values are orders of magnitude larger than the corresponding values for electrostatic capacitors: U.sub.elec [almost equal to] 4.5x10.sup.-3 Jm.sup.-3 and [rho].sub.elec [almost equal to] 1.2 Cm.sup.-3 . A non-linear model was also developed to fit unstable oscillations found in the output profiles produced by abrupt lighting. The output signals in natural dyes-based solar cells (DSSC) can be either rising or decaying depending on the type of ions present in the system; these ions called added ions, are introduced by the additives: mordant and brighteners. The photon-dye interaction produces electrons, which eventually reach the electrode giving place to a superficially charged electrode in contact with an electrolyte where are the added ions. This combination produces, automatically, an electrical double-layer EDL structure which has important effects on the performance of the system: a) the added ions control, to a large extent, the initial shape of the output signal, giving rise to rising or decaying profiles; b) it is possible to store large amounts of energy and charge at high electric fields. This structure is found in many other systems that have a surface charged in contact with an electrolyte like piezoelectric materials in human body. This assertion was supported by determining important parameters such as the force between charged surfaces on both sides of the interface, the charge density, the energy density, and the capacitance. The Debye length has very small values then, many important quantities depend on this; it is possible to obtain large values for energy U DL ~ 3.6x10 5 Jm -3 and charge density ρ DL ≈ 1.1x10 7 Cm -3 for double layer capacitors; these values are orders of magnitude larger than the corresponding values for electrostatic capacitors: U elec ≈ 4.5x10 -3 Jm -3 and ρ elec ≈ 1.2 Cm -3 . A non-linear model was also developed to fit unstable oscillations found in the output profiles produced by abrupt lighting. |
Audience | Academic |
Author | Gallegos, Juan Carlos Rodríguez, Rogelio Vargas, Susana Rangel, Domingo |
AuthorAffiliation | Centro de Física Aplicada y Tecnología Avanzada, Universidad Nacional Autónoma de México, Querétaro, México K Ramakrishnan College of Technology, INDIA |
AuthorAffiliation_xml | – name: K Ramakrishnan College of Technology, INDIA – name: Centro de Física Aplicada y Tecnología Avanzada, Universidad Nacional Autónoma de México, Querétaro, México |
Author_xml | – sequence: 1 givenname: Susana surname: Vargas fullname: Vargas, Susana organization: Centro de Física Aplicada y Tecnología Avanzada, Universidad Nacional Autónoma de México, Querétaro, México – sequence: 2 givenname: Domingo orcidid: 0009-0007-7880-2731 surname: Rangel fullname: Rangel, Domingo organization: Centro de Física Aplicada y Tecnología Avanzada, Universidad Nacional Autónoma de México, Querétaro, México – sequence: 3 givenname: Juan Carlos surname: Gallegos fullname: Gallegos, Juan Carlos organization: Centro de Física Aplicada y Tecnología Avanzada, Universidad Nacional Autónoma de México, Querétaro, México – sequence: 4 givenname: Rogelio surname: Rodríguez fullname: Rodríguez, Rogelio organization: Centro de Física Aplicada y Tecnología Avanzada, Universidad Nacional Autónoma de México, Querétaro, México |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/38805499$$D View this record in MEDLINE/PubMed |
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Herbowski – start-page: 518 volume-title: Principles of Colloid and Surface Chemistry year: 1997 ident: pone.0298776.ref014 contributor: fullname: PC Hiemenz |
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SubjectTerms | Biology and Life Sciences Capacitance Capacitors Charge density Coloring Agents - chemistry Debye length Dye-sensitized solar cells Dyes Electric Capacitance Electric contacts Electric double layer Electric fields Electric Power Supplies Electrodes Electrolytes Electrolytic cells Electronic components industry Electrons Energy charge Energy management systems Energy storage Engineering and Technology Ions Oscillations Physical Sciences Piezoelectricity Solar batteries Solar cells Solar Energy Storage capacity |
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Title | Double layer capacitors in dye sensitized solar cells with large charge and energy storage capacity and controlled shape of output voltage signals |
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