
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 31
Improved batteries are needed to meet increasing energy demands worldwide (e.g., portable and medical devices, e ...
Novel methods to access complex molecular structures open new avenues for applications in medicalas well as material ...
Novel methods to access complex molecular structures open new avenues for applications in medical as well as material ...
The computational modeling of molecular transformations in organic chemistry, e.g. photo-inducible isomerizations of ...
Solid electrolytes (SE) in all-solid-state batteries due to their high safety and flexibility in design have attracted ...
Alkanes are attractive feedstock chemicals due to their natural occurrence and they offer access to a wide variety of ...
Carbohydrates “(CH2O)n” or sugars are the formal adducts of carbon (atoms) to water with a repeating unit that ...
Ideal one-dimensional electronic systems are characterized by unusual and fascinating physical phenomena, including ...
Comparing to traditional electronics, spintronics makes use of both charge and spin freedoms of electrons, which is ...
Permanent magnets are an important component in a wide range of everyday devices. Present high performance magnets like ...
Analogous to perovskites, the antiperovskites (APVs) are also one of the most commonly explored materials in recent ...
Our research focuses on the activation of stable bonds/small molecules. This is traditionally accomplished by transition ...
The project focused on interface phenomena in battery materials and exchange spring magnets but also studied the ...
Azobenzenes (AB) are promising candidates for molecular solar thermal energy storage (MOST) systems. After synthesizing ...
Curved aromatic molecules are unique compounds as they combine special properties due to the delocalized π-system, with ...
Our investigation aimed at determining the photo-physical properties of an ammonium tagged azobenzene 1 in comparison to ...
Ceria (CeO2) is an important support material for transition metal based oxides like vanadia (VOx). These VOx/CeO2 catal ...
Due to an ever-increasing energy demand worldwide, new and efficient energy storage systems are needed more and more ...
Atomistic calculations enable us to observe processes on the micro scale, where common continuum mechanics are not valid ...
London dispersion forces help explaining unexpected attractive interactions of organic material. During the last century ...
Sulfur-containing compounds present in the earth’s atmosphere impact cloud formation and thus our climate. The main ...
Adding dispersion energy donors (DED) to a system can severely change the outcome of a reaction.[1] The concept of a DED ...
We have recently reported the synthesis of a pyridonate borane complex that reversibly activates dihydrogen under mild ...
Metal/organic interfaces are found in several technologies that are key to developing modern electronic devices ...
While quantum-mechanical tunneling (QMT) was recognized early in the emerging field of quantum theory as an accelerating ...
A large kinetic isotope effect (KIE) is one of the criteria that indicates quantum mechanical tunneling in a chemical ...
The determination of the strength of London dispersion interactions between polarizable groups is connected with some ...
Perhydroazulenes are common structural motifs in a variety of terpene natural products. Despite of their structural ...
London dispersion (LD) interactions constitute the attractive part of the van-der-Waals potential and they have been ...
London Dispersion (LD)[1-3] interactions are noncovalent interactions that hold together nonpolar or weakly polar ...