Interfaces formed by high energy density materials and metal oxides present intriguing new opportunities for a large set of novel applications that depend on the control of the energy release and initiation of explosive chemical reactions. We studied the role of structural defects at a MgO surface in the modification of electronic and optical properties of the energetic material TNT (2-methyl-1,3,5-trinitrobenzene, also known as trinitrotoluene, C7H5N3O6) deposited at the surface. Using density functional theory (DFT)-based solid-state periodic calculations with hybrid density functionals, we show how the control of chemical explosive reactions can be achieved by tuning the electronic structure of energetic compound at an interface with oxi...
A combined theoretical and experimental study is performed for the initiation of chemistry process i...
Photonic crystals (PhCs) possess outstanding optical properties that can be exploited for chemical s...
To design efficient personal protective equipment against chemical warfare agents, there is a need t...
A thorough investigation of 2,4,6-trinitrotoluene (TNT) adsorption on a MgO(001) surface was carried...
We use first-principles computations based on Ehrenfest dynamics and density functional theory to st...
The rapid detection of chemical explosives is crucial for national security and public safety, and t...
Oxides and oxide-derived materials find ubiquitous applications in many industrial applications. The...
As security needs have increased, mechanism investigation has become of high importance in the devel...
Periodic density functional theory calculations revealed strong enhancement of chemical reactivity b...
Luminescent metal-organic frameworks (LMOFs) have emerged as a group of new and very promising optic...
An ab initio study is performed for the initiation of chemistry in high explosive crystals from a so...
A novel mechanism for detonation initiation in solid explosives is proposed. This is based on electr...
Most extensive efforts in studying buried interfaces are focused on exploring optical, electronic, a...
The focus of this doctoral thesis is the atomic level design of photocatalysts and gas sensing mater...
Interfacial charge transfer between metal oxides and organic semiconductors has been found to limit ...
A combined theoretical and experimental study is performed for the initiation of chemistry process i...
Photonic crystals (PhCs) possess outstanding optical properties that can be exploited for chemical s...
To design efficient personal protective equipment against chemical warfare agents, there is a need t...
A thorough investigation of 2,4,6-trinitrotoluene (TNT) adsorption on a MgO(001) surface was carried...
We use first-principles computations based on Ehrenfest dynamics and density functional theory to st...
The rapid detection of chemical explosives is crucial for national security and public safety, and t...
Oxides and oxide-derived materials find ubiquitous applications in many industrial applications. The...
As security needs have increased, mechanism investigation has become of high importance in the devel...
Periodic density functional theory calculations revealed strong enhancement of chemical reactivity b...
Luminescent metal-organic frameworks (LMOFs) have emerged as a group of new and very promising optic...
An ab initio study is performed for the initiation of chemistry in high explosive crystals from a so...
A novel mechanism for detonation initiation in solid explosives is proposed. This is based on electr...
Most extensive efforts in studying buried interfaces are focused on exploring optical, electronic, a...
The focus of this doctoral thesis is the atomic level design of photocatalysts and gas sensing mater...
Interfacial charge transfer between metal oxides and organic semiconductors has been found to limit ...
A combined theoretical and experimental study is performed for the initiation of chemistry process i...
Photonic crystals (PhCs) possess outstanding optical properties that can be exploited for chemical s...
To design efficient personal protective equipment against chemical warfare agents, there is a need t...