Project: 3D strain fields for functional 4D material design: A unifying computational protocol to tune the phase stability of strain-engineered nanostructured materials
2021-10-01 – 2023-08-31
- Abstract
Tuneable nanostructured materials such as metal-organic frameworks (MOFs) and metal halide perovskites (MHPs) are highly promising contenders for various pressing technological challenges, from efficient photovoltaic devices to high-performant shock absorbers. Their highly modifiable atomic structure and polymorphism, which can lead to large-amplitude phase transitions in response to small changes in structural composition or external triggers, make them attractive platforms for rational material design. However, to reach their full potential, it is crucial to fundamentally understand the relation between these modifications and the time-dependent macroscopic material response. This proposal will therefore establish general design principles, applicable to both MOFs and MHPs, based on the strain field concept. Strain fields emerge when the material deviates from its equilibrium structure and extend over the whole crystal, relating atomic-level deviations with macroscopic material behaviour. Herein, we will construct a library of computational strain fingerprints for various types of spatial disorder, including crystal surfaces, and assess their impact on the phase stability of these materials. By accounting for the effect of external triggers and the intrinsic timescale for strain field nucleation and propagation, overarching principles to rationally design the structural and time-dependent functional response of strain-engineered 4D MOF and MHP materials will be formulated.
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- Journal Article
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Water motifs in zirconium metal-organic frameworks induced by nanoconfinement and hydrophilic adsorption sites
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- Journal Article
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- open access
High-throughput screening of covalent organic frameworks for carbon capture using machine learning
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- Journal Article
- A1
- open access
OGRe : optimal grid refinement protocol for accurate free energy surfaces and its application in proton hopping in zeolites and 2D COF stacking
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- Journal Article
- A1
- open access
Additivity of atomic strain fields as a tool to strain-engineering phase-stabilized CsPbI3 perovskites
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- Journal Article
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- open access
MicMec : developing the micromechanical model to investigate the mechanics of correlated node defects in UiO-66
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- Journal Article
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- open access
Quantum tunneling rotor as a sensitive atomistic probe of guests in a metal-organic framework
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- Journal Article
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MOFs for long-term gas storage : exploiting kinetic trapping in ZIF-8 for on-demand and stimuli-controlled gas release
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- Journal Article
- A1
- open access
Absorbing stress via molecular crumple zones : strain engineering flexibility into the rigid UiO-66 material
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- Journal Article
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- open access
Microscopic linker distribution in mixed-linker zeolitic imidazolate frameworks via computational raman spectroscopy : implications for gas separation
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- Journal Article
- A1
- open access
ReDD-COFFEE : a ready-to-use database of covalent organic framework structures and accurate force fields to enable high-throughput screenings