
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 36
Biomass-derived fuels are promising candidates to replace traditional fossil-based fuels for mobility and propulsion but ...
The project seeks to create a comprehensive model linking nanoscale phenomena to larger-scale behaviors to better ...
In the research area of circular building design, design concepts for sustainable masonry are being implemented using ...
Layered transition metal oxides, derived from the model system LiCoO2, are used as cathode materials in Li-ion batteries ...
A quantum computer is a device that exploits quantum behavior to solve a computational problem that cannot be tackled ...
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 ...
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 ...
Over the past decade, there has been a significant shift in the industrial sector towards sustainability, leading to ...
The project aims to develop a bridging model that connects the nanoscale to the upscaled levels for understanding the ...
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 ...
The compound semiconductor system Cu(In, Ga)(S, Se)2 (short: CIGS) forms the basis for the currently most efficient thin ...
Metallic glasses (MGs) can be produced by quickly quenching alloy melts. They typically show a higher elastic limit and ...
Permanent magnets are the key component of electric motors and generators, which currently have a high demand in the ...
Overall objective of this project is to develop an elementary physical/chemical bridging model for the chemical reaction ...
Layered transition metal oxides are employed as cathode materials in high-voltage, rechargeable lithium ion batteries ...
One approach to the realization of safer batteries relies on all solid-state batteries (ASSB) which use a non-flammable ...
Refractory metal silicide systems like Mo-Si-Ti are expected to be ideal substrates in composite materials for high ...
Predicting the temperature dependent properties of magnetic materials is still challenging, which cannot be dealt with ...
Magnetic materials are key components for energy harvesting and conversion, information technology and sensor ...
In 2018, Gottschall et al. proposed a multi-stimulit concept for magnetocaloric cooling. [1] The energy consumption ...
One important aim of modern energy-conserving technologies is magnetic cooling at room temperature. This environmentally ...
Dielectric capacitors are considered to be promising candidates for energy storage applications in high power ...
In Cu(In,Ga)(S,Se)2 (CIGS) thin-film solar cells, Ga gradient forms readily during the CIGS growth resulting to a high ...
NASICON, short for Na+ Superionic Conductor, is a group of materials with the composition Na1+xZr2SixP3-xO12 with 0 < x ...
In need for alternatives to conventional cooling devices, the magnetocaloric effect (MCE) is one of the most promising ...
Improved batteries are needed to meet increasing energy demands worldwide (e.g., portable and medical devices, e ...
Brake discs are put to high thermomechanical stresses during operation. These loads might induce the so called heat ...