Contact:
- email:
- jacek.dziedzic@pg.edu.pl
Positions:
Associate professor
- workplace:
- Instytut Nanotechnologii i Inżynierii Materiałowej
Gmach Główny, 106
- phone:
- (58) 347 20 95

Publications:
-
Publication
- A. Bhandari
- J. Dziedzic
- J. R. Owen
- D. Kramer
- C. Skylaris
- Journal of Materials Chemistry A - Year 2024
Li plating on the anode is a side reaction in Li-ion batteries which competes with Li intercalation and leads to loss of capacity. Growth of Li clusters into dendrites is a potential safety hazard for batteries which can lead to internal short-circuit and fires. We consider two possibilities of Li deposition on the surface of graphite anode: deposition of Li+ ions uniformly on the surface and deposition of clusters of metallic...
Full text available to download
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Publication
- M. P. Mercer
- A. Bhandari
- C. Peng
- J. Dziedzic
- C. Skylaris
- D. Kramer
- PHYSICAL CHEMISTRY CHEMICAL PHYSICS - Year 2024
Graphite nanoparticles are important in energy materials applications such as lithium-ion batteries (LIBs), supercapacitors and as catalyst supports. Tuning the work function of the nanoparticles allows local control of lithiation behaviour in LIBs, and the potential of zero charge of electrocatalysts and supercapacitors. Using large scale density functional theory (DFT) calculations, we find that the surface termination of multilayer...
Full text available to download
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Publication
- A. Bhandari
- C. Peng
- J. Dziedzic
- J. R. Owen
- D. Kramer
- C. Skylaris
- Journal of Materials Chemistry A - Year 2022
Application of Li-ion batteries in electric vehicles requires improved safety, increased lifetime and high charging rates. One of the most commonly used intercalation anode material for Li-ion batteries, graphite, is vulnerable to Li nucleation, a side reaction which competes with the intercalation process and leads to loss of reversible capacity of the battery, ageing and short-circuits. In this study, we deploy a combined grand...
Full text available to download
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Publication
This work presents extensive theoretical studies focused on the mixed ion-electron transport in cubic strontium titanate (STO). A new approach to the description of this difficult system was developed within the framework of linear-scaling Kohn–Sham density functional theory, as realized in the ONETEP program. The description we present is free of any empirical parameters and relies on the Hubbard U and Hund’s J corrections applied...
Full text available to download
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Publication
- A. Bhandari
- C. Peng
- J. Dziedzic
- L. Anton
- J. R. Owen
- D. Kramer
- C. Skylaris
- JOURNAL OF CHEMICAL PHYSICS - Year 2021
Progress in electrochemical technologies, such as automotive batteries, supercapacitors, and fuel cells, depends greatly on developing improved charged interfaces between electrodes and electrolytes. The rational development of such interfaces can benefit from the atomistic understanding of the materials involved by first-principles quantum mechanical simulations with Density Functional Theory (DFT). However, such simulations are...
Full text available to download