Meso-Scale Modelling of Charge Transport in Halide Perovskites

Author(s):  
Matthew Wolf ◽  
Lewis Irvine ◽  
Ian Thompson ◽  
Alison Walker
2018 ◽  
Author(s):  
Matthew Wolf ◽  
Lewis Irvine ◽  
Ian Thompson ◽  
Alison Walker

Author(s):  
Y. Y. Yan

A micro/meso scale modelling of two-phase droplets move on hydrophilic/hydrophobic surfaces with micro roughness is reported. The physical model is basically of two-phase flow interacting with the surfaces of different hydrophobicity or wettability. Numerical modelling based on the lattice Boltzmann method (LBM) is developed and applied to the computational calculation and simulation. The LBM modelling deals with surface tension dominated behaviour of water droplets in air spreading on a hydrophilic surface with hydrophobic strips of different sizes and contact angles under different physical and interfacial conditions, and aims to find quantitative data and physical conditions of the biomimetic approaches. The current LBM can be applied to simulate two-phase fluids with large density ratio (up to 1000), and meanwhile deal with interactions between a fluid-fluid interface and a partial wetting wall. In the simulation, the interactions between the fluid-fluid interface and the partial wetting wall with different hydrophobic strips such as single strip, intersecting stripes, and alternating & parallel stripes, of different sizes and contact angles are considered and tested numerically; the phenomena of droplets spreading and breaking up, and the effect of hydrophobic strips on the surface wettability or self-cleaning characteristics are simulated, reported and discussed.


Author(s):  
Francesco Maddalena ◽  
Pablo P. Boix ◽  
Chin Xin Yu ◽  
Nripan Mathews ◽  
Cesare Soci ◽  
...  

2020 ◽  
Vol 134 ◽  
pp. 106096 ◽  
Author(s):  
Deheng Wei ◽  
Ryan C. Hurley ◽  
Leong Hien Poh ◽  
Daniel Dias-da-Costa ◽  
Yixiang Gan

2017 ◽  
Vol 166 ◽  
pp. 269-275 ◽  
Author(s):  
Irene Grill ◽  
Kathrin Handloser ◽  
Fabian C. Hanusch ◽  
Nadja Giesbrecht ◽  
Thomas Bein ◽  
...  

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