
Projects
Hessian scientists of various disciplines are using High Performance Computers for their research.
Hessian scientists of various disciplines are using High Performance Computers for their research.
Displaying 1 - 30 of 66
Linking experimental and theoretical observations on a physical system is one of the key objectives of modern science ...
Hydrogen has emerged as a crucial element in the pursuit of decarbonization and the transition to a sustainable energy ...
Biomass-derived fuels are promising candidates to replace traditional fossil-based fuels for mobility and propulsion but ...
Symmetry, dimensionality, and local environment are essential elements affecting the magnetism of transition-metal ...
The project seeks to create a comprehensive model linking nanoscale phenomena to larger-scale behaviors to better ...
In the past centuries chemists have established a solid knowledge for the synthesis of molecules in solution. With the ...
Functional materials for magnetic cooling devices at room temperature are in focus for the materials scientists during ...
Layered transition metal oxides, derived from the model system LiCoO2, are used as cathode materials in Li-ion batteries ...
The potential of chalcogenides in applications like optoelectronics, thermoelectrics, transparent contacts, and thin ...
A quantum computer is a device that exploits quantum behavior to solve a computational problem that cannot be tackled ...
Linking experimental and theoretical observations on a physical system is one of the key objectives of modern science ...
Heusler alloys are a remarkable class of intermetallic materials with a wide spectrum of intriguing physical properties ...
Optoelectronic materials have attracted significant attention owing to the global energy shortage and environmental ...
We survey the landscape of MAB and Mbene superconductors out of our previous high-throughput predictions using first ...
To understand and study complex materials at the atomic level, it is essential to be able to calculate forces and ...
The simulation of materials on the atomistic scale requires a description of interatomic interactions. Quantum ...
The project aims to develop a bridging model that connects the nanoscale to the upscaled levels for understanding the ...
White light generation (WLG) is one of the most puzzling and exciting topics in nonlinear optics. Strictly speaking, WLG ...
X-ray Absorption Spectroscopy (XAS) is a pivotal technique in material research, requiring numerous sampling points for ...
Nowadays, atomistic simulations are becoming more and more important. Due to the increasing availability of ...
In a hydrogen fuel cell, that consists of an anode and a cathode, oxidation and reduction reactions occur simultaneously ...
Autonomous materials discovery with desired properties is one of the ultimate goals for modern materials science, and ...
The compound semiconductor system Cu(In, Ga)(S, Se)2 (short: CIGS) forms the basis for the currently most efficient thin ...
A class of cluster materials with an adamantane-like core structure (AdR4 or [(RE)4T6]; R=organic structure; E=Si, Ge ...
Metallic glasses (MGs) can be produced by quickly quenching alloy melts. They typically show a higher elastic limit and ...
Overall objective of this project is to develop an elementary physical/chemical bridging model for the chemical reaction ...
Verdazyl radicals are discussed as a possible candidate for application in organic redox flow batteries. These species ...
The current project aims to reveal the relevant intrinsic mechanisms responsible for the coupling of the lattice and ...
Since their invention in the 1960s, metallic glasses (MGs) gained great attention due to their high strength and elastic ...
Layered transition metal oxides are employed as cathode materials in high-voltage, rechargeable lithium ion batteries ...