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Viewpoint: Atomic-Scale Design Protocols toward Energy, Electronic, Catalysis, and Sensing Applications

Viewpoint: Atomic-Scale Design Protocols toward Energy, Electronic, Catalysis, and Sensing Applications
Viewpoint: Atomic-Scale Design Protocols toward Energy, Electronic, Catalysis, and Sensing Applications

Nanostructured materials are essential building blocks for the fabrication of new devices for energy harvesting/storage, sensing, catalysis, magnetic, and optoelectronic applications. However, because of the increase of technological needs, it is essential to identify new functional materials and improve the properties of existing ones. The objective of this Viewpoint is to examine the state of the art of atomic-scale simulative and experimental protocols aimed to the design of novel functional nanostructured materials, and to present new perspectives in the relative fields. This is the result of the debates of Symposium I "Atomic-scale design protocols towards energy, electronic, catalysis, and sensing applications", which took place within the 2018 European Materials Research Society fall meeting.

0020-1669
14939-14980
Belviso, Florian
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Claerbout, Victor E.P.
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Comas-Vives, Aleix
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Dalal, Naresh S.
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Fan, Feng Ren
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Filippetti, Alessio
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Fiorentini, Vincenzo
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Foppa, Lucas
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Franchini, Cesare
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Geisler, Benjamin
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Ghiringhelli, Luca M.
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Groß, Axel
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Hu, Shunbo
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Íñiguez, Jorge
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Kauwe, Steven Kaai
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Musfeldt, Janice L.
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Nicolini, Paolo
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Pentcheva, Rossitza
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Polcar, Tomas
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Ren, Wei
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Ricci, Fabio
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Ricci, Francesco
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Sen, Huseyin Sener
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Skelton, Jonathan Michael
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Sparks, Taylor D.
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Stroppa, Alessandro
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Urru, Andrea
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Vandichel, Matthias
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Vavassori, Paolo
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Wu, Hua
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Yang, Ke
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Zhao, Hong Jian
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Puggioni, Danilo
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Cortese, Remedios
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Cammarata, Antonio
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Belviso, Florian
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Claerbout, Victor E.P.
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Comas-Vives, Aleix
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Dalal, Naresh S.
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Fan, Feng Ren
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Filippetti, Alessio
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Fiorentini, Vincenzo
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Foppa, Lucas
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Franchini, Cesare
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Geisler, Benjamin
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Ghiringhelli, Luca M.
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Groß, Axel
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Hu, Shunbo
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Íñiguez, Jorge
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Kauwe, Steven Kaai
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Musfeldt, Janice L.
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Nicolini, Paolo
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Pentcheva, Rossitza
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Polcar, Tomas
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Ren, Wei
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Ricci, Fabio
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Ricci, Francesco
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Sen, Huseyin Sener
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Skelton, Jonathan Michael
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Sparks, Taylor D.
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Stroppa, Alessandro
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Urru, Andrea
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Vandichel, Matthias
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Vavassori, Paolo
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Wu, Hua
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Yang, Ke
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Zhao, Hong Jian
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Puggioni, Danilo
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Cortese, Remedios
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Cammarata, Antonio
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Belviso, Florian, Claerbout, Victor E.P., Comas-Vives, Aleix, Dalal, Naresh S., Fan, Feng Ren, Filippetti, Alessio, Fiorentini, Vincenzo, Foppa, Lucas, Franchini, Cesare, Geisler, Benjamin, Ghiringhelli, Luca M., Groß, Axel, Hu, Shunbo, Íñiguez, Jorge, Kauwe, Steven Kaai, Musfeldt, Janice L., Nicolini, Paolo, Pentcheva, Rossitza, Polcar, Tomas, Ren, Wei, Ricci, Fabio, Ricci, Francesco, Sen, Huseyin Sener, Skelton, Jonathan Michael, Sparks, Taylor D., Stroppa, Alessandro, Urru, Andrea, Vandichel, Matthias, Vavassori, Paolo, Wu, Hua, Yang, Ke, Zhao, Hong Jian, Puggioni, Danilo, Cortese, Remedios and Cammarata, Antonio (2019) Viewpoint: Atomic-Scale Design Protocols toward Energy, Electronic, Catalysis, and Sensing Applications. Inorganic Chemistry, 58 (22), 14939-14980. (doi:10.1021/acs.inorgchem.9b01785).

Record type: Review

Abstract

Nanostructured materials are essential building blocks for the fabrication of new devices for energy harvesting/storage, sensing, catalysis, magnetic, and optoelectronic applications. However, because of the increase of technological needs, it is essential to identify new functional materials and improve the properties of existing ones. The objective of this Viewpoint is to examine the state of the art of atomic-scale simulative and experimental protocols aimed to the design of novel functional nanostructured materials, and to present new perspectives in the relative fields. This is the result of the debates of Symposium I "Atomic-scale design protocols towards energy, electronic, catalysis, and sensing applications", which took place within the 2018 European Materials Research Society fall meeting.

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Published date: 18 November 2019

Identifiers

Local EPrints ID: 453976
URI: http://eprints.soton.ac.uk/id/eprint/453976
ISSN: 0020-1669
PURE UUID: cd235d82-8fc3-4fd0-aa1e-949e82e9346b
ORCID for Tomas Polcar: ORCID iD orcid.org/0000-0002-0863-6287

Catalogue record

Date deposited: 27 Jan 2022 17:30
Last modified: 18 Mar 2024 03:19

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Contributors

Author: Florian Belviso
Author: Victor E.P. Claerbout
Author: Aleix Comas-Vives
Author: Naresh S. Dalal
Author: Feng Ren Fan
Author: Alessio Filippetti
Author: Vincenzo Fiorentini
Author: Lucas Foppa
Author: Cesare Franchini
Author: Benjamin Geisler
Author: Luca M. Ghiringhelli
Author: Axel Groß
Author: Shunbo Hu
Author: Jorge Íñiguez
Author: Steven Kaai Kauwe
Author: Janice L. Musfeldt
Author: Paolo Nicolini
Author: Rossitza Pentcheva
Author: Tomas Polcar ORCID iD
Author: Wei Ren
Author: Fabio Ricci
Author: Francesco Ricci
Author: Huseyin Sener Sen
Author: Jonathan Michael Skelton
Author: Taylor D. Sparks
Author: Alessandro Stroppa
Author: Andrea Urru
Author: Matthias Vandichel
Author: Paolo Vavassori
Author: Hua Wu
Author: Ke Yang
Author: Hong Jian Zhao
Author: Danilo Puggioni
Author: Remedios Cortese
Author: Antonio Cammarata

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