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Project/Service Agreement:PTDC/QUI-ELT/2593/2021

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Status
Projeto Em CursoIn Progress
Publication
PublicadoPublished
General Data
Code: 78475
 
Reference: PTDC/QUI-ELT/2593/2021
Short name: RedoxMOFs
Title: Redox-active Metal-Organic Frameworks as Electrode Materials for Lithium-Ion Batteries
Competitive Funding: Yes
Does it involve businesses?: No
No. of Participating Institutions: 2
Scope
Type: Funded Project
 
Geographical Scope: National
 
Type of Action: R&TD
Funding
Programme: I&DT - Projectos de I&DT em Todos os Domínios Científicos
Funding Institution: FCT - Fundação para a Ciência e a Tecnologia
Financial Geographical Scope: National
Date of the Funding Agreement: 2021-11-24
Paying Entity: Fundação para a Ciência e a Tecnologia
Scheduling
Effective Start Date: 2022-01-01
Expected Completion Date: 2024-12-31
Effective Completion Date: 2024-12-31
Budget
Currency: EUR
 
Total Approved Budget: 247.233,16 EUR
Details
Summary: One of the main concerns of modern society is reducing its dependence on fossil fuels. Due to their low cost and low environmental impact, electrical energy storage devices are
among the most promising alternatives to conventional fossil fuels, as the electricity generated from renewable sources may be efficiently stored. In particular, lithium-ion batteries
(LIBs) are important power sources for portable electronics and electric cars, as they are more performant than other conventional batteries. However, LIBs raise concerns pertaining
the use of transition-metal electrode materials and liquid electrolytes. Conventional LiCoO2 cathodes and graphite anodes have limited energy density, while transition-metal oxide
cathodes pose environmental concerns. Liquid electrolytes are volatile and flammable, constituting a serious safety issue as they may lead to explosions if internal short-circuits give
rise to thermal runways with oxygen release. The overarching objective of this project is to explore alternative solutions to address these LIBs issues using redox-active Metal-
Organic Frameworks (MOFs) as the electrode materials, and solid Li-glass as the electrolyte. These MOFs are promising crystalline porous electrode materials for energy storage due
to their low solubility, high stability, high ionic conductivity, and versatility to tune by chemical design the electrode parameters (capacity and working potential). Since most MOFs
are insulators, a main challenge is to design MOFs exhibiting high electrical conductivity and stability to enhance the specific capacity and rate performance. This project aims at the
design and synthesis of a new family of conductive and highly stable redox-active MOFs to be used as LIBs electrode materials. Construction of such MOFs comprises the judicious
choice and functionalization of electroactive organic building blocks to enhance the electrode's conductivity and capacity and establish novel structure-property relatio Ver mais. Adequado para parcelas de texto incompletas e que, através deste ícone, permite-se que o utilizador leia o texto todo.
Scientific Context
Scientific Domain (FOS - Level 2): Engineering and technology

Academic fields (CORDIS - Level 5)

Mais informações There are no Academic Fields associated with the Project.

Keywords

Mais informações There are no Keywords associated with the Project.
Documents
Mais informações There are no Documents associated with the Project.

Publications associated with the Project

Article in International Scientific Journal
Antonio Nuno Guerreiro (Author) (FEUP); Beatriz Arouca Maia (Author) (FEUP); Hesham Khalifa (Author) (FEUP); Manuela Carvalho Baptista (Author) (Other); Maria Helena Braga (Author) (FEUP)
2022
Article in International Scientific Journal
Manuela C. Baptista (Author) (FEUP); Beatriz M. Gomes (Author) (Other); Diana Capela (Author) (Other); Miguel F.S. Ferreira (Author) (Other); Diana Guimarães (Author) (Other); Nuno A. Silva (Author) (Other); Pedro A. S. Jorge (Author) (FCUP); José J. Silva (Author) (Other); M. Helena Braga (Author) (FEUP)
2023
Article in International Scientific Journal
Beatriz Moura Gomes (Author) (FEUP); J. Francisco Ribeiro Moutinho (Author) (FCUP); Maria Helena Braga (Author) (FEUP)
2024
Article in International Scientific Journal
Manuela Carvalho Baptista (Author) (Other); Hesham Khalifa (Author) (FEUP); Adão Araújo (Author) (Other); Beatriz Arouca Maia (Author) (Other); Manuel Souto (Author) (Other); Maria Helena Braga (Author) (FEUP)
2023
Article in International Scientific Journal
Maria Helena Braga (Author) (FEUP)
2024
Article in International Scientific Journal
Beatriz Arouca Maia (Author) (FEUP); Beatriz Moura Gomes (Author) (FEUP); Antonio Nuno Guerreiro (Author) (FEUP); Raquel Miriam Santos (Author) (Other); Maria Helena Braga (Author) (FEUP)
2024
Article in International Scientific Journal
Manuela C. Baptista (Author) (FEUP); Beatriz M. Gomes (Author) (FEUP); António B. Vale (Author) (Other); M. Helena Braga (Author) (FEUP)
2024
Article in International Scientific Journal
Gonçalo Valente (Author) (Other); Raquel Dantas (Author) (Other); Pedro Ferreira (Author) (Other); Rebecca Grieco (Author) (Other); Nagaraj Patil (Author) (Other); Ana Guillem-Navajas (Author) (Other); David Rodríguez-San Miguel (Author) (Other); Felix Zamora (Author) (Other); Roman Guntermann (Author) (Other); Thomas Bein (Author) (Other); Joao Rocha (Author) (Other); Helena Braga (Author) (FEUP); Karol Strutynski (Author) (Other); Manuel Melle-Franco (Author) (Other); Rebeca Marcilla (Author) (Other); Manuel Souto (Author) (Other)
2024
Article in International Scientific Journal
Mafalda Valente (Author) (Other); Sara Magalhães Silva (Author) (Other); Maria Helena Braga (Author) (FEUP)
2023
Institutions Participating in the Project
Institution Contact Create Tab?
Name Short name Country Type Participation Name Telephone Email
Universidade de Aveiro UA Portugal University Proponent
Faculdade de Engenharia da Universidade do Porto FEUP Portugal University Partner
 
Budgets and Teams
Approved Budget: 62.491,62 EUR
Approved Funded Amount: 62.491,62 EUR
Approved co-funded Amount: 0,00 EUR
Funding Rate: 100 %
Confidential Budget:

People in the Project

Institution Name Short name Role Dedication (%) Contribution (%) Allocation
Start date End date
FEUP Maria Helena Sousa Soares de Oliveira Braga MHB Official Researcher at the OU 2022-01-01 2024-12-31

Technicians in the Project

Technician Contact
FEUP 618918 Ana Cláudia da Silva Valega Fonseca
Laboratories
Mais informações There are no Laboratories associated with the Project.
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