Materials Map

Discover the materials research landscape. Find experts, partners, networks.

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The Materials Map is an open tool for improving networking and interdisciplinary exchange within materials research. It enables cross-database search for cooperation and network partners and discovering of the research landscape.

The dashboard provides detailed information about the selected scientist, e.g. publications. The dashboard can be filtered and shows the relationship to co-authors in different diagrams. In addition, a link is provided to find contact information.

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Materials Map under construction

The Materials Map is still under development. In its current state, it is only based on one single data source and, thus, incomplete and contains duplicates. We are working on incorporating new open data sources like ORCID to improve the quality and the timeliness of our data. We will update Materials Map as soon as possible and kindly ask for your patience.

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693.932 PEOPLE
693.932 People People

693.932 People

Show results for 693.932 people that are selected by your search filters.

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Naji, M.
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Coelho, João

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Universidad de Sevilla

in Cooperation with on an Cooperation-Score of 37%

Topics

Publications (12/12 displayed)

  • 2023Influence of CO2 laser beam modelling on electronic and electrochemical properties of paper-based laser-induced graphene for disposable pH electrochemical sensors18citations
  • 2023Influence of CO2 laser beam modelling on electronic and electrochemical properties of paper-based laser-induced graphene for disposable pH electrochemical sensors18citations
  • 2022Water Peel-Off Transfer of Electronically Enhanced, Paper-Based Laser-Induced Graphene for Wearable Electronics52citations
  • 2022Application of electric arc furnace slag as an alternative precursor to blast furnace slag in alkaline cementscitations
  • 2022Water peel-off transfer of electronically enhanced, paper-based laser-induced graphene for wearable electronics52citations
  • 2021Laser-induced graphene on paper toward efficient fabrication of flexible, planar electrodes for electrochemical sensing102citations
  • 2021Inclusion of 2d transition metal dichalcogenides in perovskite inks and their influence on solar cell performance10citations
  • 2021Laser-Induced Graphene on Paper toward Efficient Fabrication of Flexible, Planar Electrodes for Electrochemical Sensing102citations
  • 2018Tailored Nickel-Iron Layered Double Hydroxide Particle Size for Optimized O.E.R. Catalysiscitations
  • 2016In-Situ TEM Analysis of Ink-Jet Printed MnO<sub>2</sub>-Graphene for Supercapacitor Electrodescitations
  • 2016Thin-Film Supercapacitor Electrodes Based on Nanomaterials Processed By Ultrasound Irradiationcitations
  • 2013Luminescence and Time-Resolved Emission Spectra of Nd<sup>3+</sup>and Er<sup>3+</sup>: Silver Zinc Borate Glasses1citations

Places of action

Chart of shared publication
Marques, Ana
3 / 11 shared
Ornelas, Cristina
2 / 2 shared
Pinheiro, Tomás
6 / 6 shared
Rosa, André
2 / 2 shared
Martins, Rodrigo
6 / 166 shared
Marques, Ana C.
3 / 7 shared
Fortunato, Elvira
3 / 25 shared
Sales, M. Goreti F.
3 / 10 shared
Correia, Ricardo
2 / 4 shared
Morais, Maria
2 / 6 shared
García-Lodeiro, Inés
1 / 12 shared
Cristelo, Nuno
1 / 12 shared
Miranda, Tiago
1 / 3 shared
Rivera, Jhonathan
1 / 2 shared
Fernández-Jiménez, Ana
1 / 13 shared
Sales, M. G. F.
1 / 9 shared
Silvestre, Sara
2 / 2 shared
Carallo, Sonia
1 / 7 shared
Rizzo, Aurora
1 / 38 shared
Taurisano, Nicola
1 / 1 shared
Colella, Silvia
1 / 29 shared
Gigli, Giuseppe
1 / 28 shared
Listorti, Andrea
1 / 32 shared
Spurling, Dahnan
1 / 2 shared
Ronan, Oskar
1 / 4 shared
Bravetti, Gianluca
1 / 3 shared
Liang, Meiying
1 / 2 shared
Nicolosi, Valeria
4 / 40 shared
Jaskaniec, Sonia
1 / 4 shared
Tyndall, Daire
1 / 2 shared
Mckeon, Lorcan
1 / 1 shared
Long, Edmund
1 / 1 shared
Park, Sang Hoon
1 / 1 shared
Zhang, Chuanfang
1 / 5 shared
Coull, Richard
1 / 1 shared
Shmelov, Aleksey
1 / 1 shared
Obrien, Sean
1 / 3 shared
Park, Sang-Hoon
1 / 5 shared
Seral-Ascaso, Andrés
1 / 8 shared
Chart of publication period
2023
2022
2021
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2016
2013

Co-Authors (by relevance)

  • Marques, Ana
  • Ornelas, Cristina
  • Pinheiro, Tomás
  • Rosa, André
  • Martins, Rodrigo
  • Marques, Ana C.
  • Fortunato, Elvira
  • Sales, M. Goreti F.
  • Correia, Ricardo
  • Morais, Maria
  • García-Lodeiro, Inés
  • Cristelo, Nuno
  • Miranda, Tiago
  • Rivera, Jhonathan
  • Fernández-Jiménez, Ana
  • Sales, M. G. F.
  • Silvestre, Sara
  • Carallo, Sonia
  • Rizzo, Aurora
  • Taurisano, Nicola
  • Colella, Silvia
  • Gigli, Giuseppe
  • Listorti, Andrea
  • Spurling, Dahnan
  • Ronan, Oskar
  • Bravetti, Gianluca
  • Liang, Meiying
  • Nicolosi, Valeria
  • Jaskaniec, Sonia
  • Tyndall, Daire
  • Mckeon, Lorcan
  • Long, Edmund
  • Park, Sang Hoon
  • Zhang, Chuanfang
  • Coull, Richard
  • Shmelov, Aleksey
  • Obrien, Sean
  • Park, Sang-Hoon
  • Seral-Ascaso, Andrés
OrganizationsLocationPeople

document

Thin-Film Supercapacitor Electrodes Based on Nanomaterials Processed By Ultrasound Irradiation

  • Coelho, João
  • Obrien, Sean
  • Park, Sang-Hoon
  • Seral-Ascaso, Andrés
  • Nicolosi, Valeria
Abstract

<jats:p>Materials at nanoscale usually present enhanced or even new and exotic properties in comparison with their bulk counterparts. Therefore, nanoparticles have been widely regarded as potential candidates for new technological developments. In the specific case of energy storage applications, such as supercapacitors and batteries, nanomaterials offer high surface areas and shorter transport paths for both electrons and ions.<jats:sup>1</jats:sup> Thus considerably improving these devices performance. Therefore, for the last couple of years, several techniques for nanomaterials synthesis have been proposed, such as mechanical exfoliation. However, most of them are only suited for laboratory scale applications due to their low production yield. In fact, the development of suitable productions methods is a key to fully exploit the advantageous properties of nanomaterials before their use in large scale industrial applications. In this context, the processing of nanomaterials by ultrasound irradiation has been regarded as one of the most feasible options for the production of highly stable nanomaterials dispersions. Besides being highly scalable, this approach is simple, cost-effective and environment friendly. Several nanomaterials, such as graphene,<jats:sup>2</jats:sup>  carbon nanotubes<jats:sup>3</jats:sup> and transition metal dichalcogenides<jats:sup>4</jats:sup> have already been successfully obtained by ultrasound processing. </jats:p><jats:p>In this work, it is presented an overview of the electrochemical properties of thin film supercapacitor/battery electrodes based on nanomaterials prepared by ultrasound irradiation. A variety of systems, from the most common materials, such as manganese oxide and lithium titanate, to more exotic ones, such as V<jats:sub>2</jats:sub>O<jats:sub>5</jats:sub> and GaSe, have been carefully processed, characterized and tested for energy storage applications. It is also exhibited the concept of co-exfoliation, where the properties of two different materials (MnO<jats:sub>2</jats:sub> and graphene) are combined in order to obtain a highly efficient composite in a cost-effective and scalable one-step approach. </jats:p><jats:p>This work intends to demonstrate the remarkable potential of nanomaterials/composites processed by ultrasound irradiation for the future design and manufacture of energy storage devices with an enhanced electrochemical performance. </jats:p><jats:p>References: </jats:p><jats:p>1. Ma, R.; Sasaki, T., Nanosheets of Oxides and Hydroxides: Ultimate 2D Charge-Bearing Functional Crystallites. <jats:italic>Adv. Mater. </jats:italic><jats:bold>2010,</jats:bold><jats:italic>22</jats:italic> (45), 5082-5104. </jats:p><jats:p>2. O’Neill, A.; Khan, U.; Nirmalraj, P. N.; Boland, J.; Coleman, J. N., Graphene Dispersion and Exfoliation in Low Boiling Point Solvents. <jats:italic>The Journal of Physical Chemistry C </jats:italic><jats:bold>2011,</jats:bold><jats:italic>115</jats:italic> (13), 5422-5428. </jats:p><jats:p>3. Bergin, S. D.; Nicolosi, V.; Streich, P. V.; Giordani, S.; Sun, Z.; Windle, A. H.; Ryan, P.; Niraj, N. P. P.; Wang, Z.-T. T.; Carpenter, L.; Blau, W. J.; Boland, J. J.; Hamilton, J. P.; Coleman, J. N., Towards Solutions of Single-Walled Carbon Nanotubes in Common Solvents. <jats:italic>Adv. Mater. </jats:italic><jats:bold>2008,</jats:bold><jats:italic>20</jats:italic> (10), 1876-1881. </jats:p><jats:p>4. Nicolosi, V.; Chhowalla, M.; Kanatzidis, M. G.; Strano, M. S.; Coleman, J. N., Liquid Exfoliation of Layered Materials. <jats:italic>Science </jats:italic><jats:bold>2013,</jats:bold><jats:italic>340</jats:italic> (6139).</jats:p>

Topics
  • nanoparticle
  • impedance spectroscopy
  • dispersion
  • surface
  • Carbon
  • nanotube
  • thin film
  • layered
  • composite
  • Lithium
  • Manganese