International audienceDue to their chemical and structural diversity, nanoporous materials can be used in a wide variety of applications, including fluid separation, gas storage, heterogeneous catalysis, drug delivery, etc. Given the large and rapidly increasing number of known nanoporous materials, and the even bigger number of hypothetical structures, computational screening is an efficient method to find the current best- performing materials and to guide the design of future materials. This review highlights the potential of high-throughput computational screenings in various applications. The achievements and the challenges associated to the screening of several material properties are discussed to give a broader perspective on the fut...
Finding the best material for a specific application is the ultimate goal of materials discovery. Ho...
International audienceWe present here the computational chemistry methods our group uses to investig...
Xe/Kr separation project: 1. GCMC isotherms and heat of adsorption 2. Machine learning 3. Ideal V...
International audienceDue to their chemical and structural diversity, nanoporous materials can be us...
International audienceDue to their chemical and structural diversity, nanoporous materials can be us...
Due to their chemical and structural diversity, nanoporous materials can be used in a wide variety o...
Since tens of thousands of nanoporous materials have been synthesized and millions have been hypothe...
We present here the computational chemistry methods our group uses to investigate the physical and c...
The materials genome initiative has led to the creation of a large (over a million) database of diff...
The materials genome initiative has led to the creation of a large (over a million) database of diff...
Since tens of thousands of nanoporous materials have been synthesized and millions have been hypothe...
The materials genome initiative has led to the creation of a large (over a million) database of diff...
The globally increasing concentrations of greenhouse gases in atmosphere after combustion of coal- o...
The current review article attempts to cover the eld of nanoporous materials, thereby materials wi...
Finding the best material for a specific application is the ultimate goal of materials discovery. Ho...
Finding the best material for a specific application is the ultimate goal of materials discovery. Ho...
International audienceWe present here the computational chemistry methods our group uses to investig...
Xe/Kr separation project: 1. GCMC isotherms and heat of adsorption 2. Machine learning 3. Ideal V...
International audienceDue to their chemical and structural diversity, nanoporous materials can be us...
International audienceDue to their chemical and structural diversity, nanoporous materials can be us...
Due to their chemical and structural diversity, nanoporous materials can be used in a wide variety o...
Since tens of thousands of nanoporous materials have been synthesized and millions have been hypothe...
We present here the computational chemistry methods our group uses to investigate the physical and c...
The materials genome initiative has led to the creation of a large (over a million) database of diff...
The materials genome initiative has led to the creation of a large (over a million) database of diff...
Since tens of thousands of nanoporous materials have been synthesized and millions have been hypothe...
The materials genome initiative has led to the creation of a large (over a million) database of diff...
The globally increasing concentrations of greenhouse gases in atmosphere after combustion of coal- o...
The current review article attempts to cover the eld of nanoporous materials, thereby materials wi...
Finding the best material for a specific application is the ultimate goal of materials discovery. Ho...
Finding the best material for a specific application is the ultimate goal of materials discovery. Ho...
International audienceWe present here the computational chemistry methods our group uses to investig...
Xe/Kr separation project: 1. GCMC isotherms and heat of adsorption 2. Machine learning 3. Ideal V...