The growth and dissolution kinetics of salicylic acid crystals are investigated in situ by focusing on individual microscale crystals. From a combination of optical microscopy and finite element method (FEM) modeling, it was possible to obtain a detailed quantitative picture of dissolution and growth dynamics for individual crystal faces. The approach uses real-time in situ growth and dissolution data (crystal size and shape as a function of time) to parametrize a FEM model incorporating surface kinetics and bulk to surface diffusion, from which concentration distributions and fluxes are obtained directly. It was found that the (001) face showed strong mass transport (diffusion) controlled behavior with an average surface concentration clos...
peer-reviewedGrowth of single salicylamide crystals was investigated in a nonstirred growth cuvette ...
Over the past decade there has been a natural drive to extend the investigation of dynamic surfaces ...
International audienceWhich conceptual framework should be preferred to develop mineral dissolution ...
Dissolution kinetics of the (110) face of salicylic acid in aqueous solution is determined by hoppin...
The aim of this thesis was to investigate crystal nucleation, growth and dissolution processes, focu...
A versatile in situ multi-microscopy approach to study the dissolution kinetics of single crystals i...
Growth and dissolution rate dispersion of boric acid single crystal was investigated in supersaturat...
The dissolution kinetics of individual microscale bicalutamide (BIC) form-I crystals are tracked ove...
Dissolution processes at single crystal surfaces often involve the initial formation and expansion o...
Using antisolvent crystallisation of salicylic acid as the model process, we report our experimental...
resolved crystal growth and dissolution kinetics by coupling in situ optical microscop
This thesis presents a multiple-scale experimental study of mineral dissolution kinetics, utilizing ...
Besides size and polymorphic form, crystal shape takes a central role in engineering advanced solid ...
Besides size and polymorphic form, crystal shape takes a central role in engineering advanced solid ...
There are a number of interesting and as yet unresolved problems concerning the dissolution rates an...
peer-reviewedGrowth of single salicylamide crystals was investigated in a nonstirred growth cuvette ...
Over the past decade there has been a natural drive to extend the investigation of dynamic surfaces ...
International audienceWhich conceptual framework should be preferred to develop mineral dissolution ...
Dissolution kinetics of the (110) face of salicylic acid in aqueous solution is determined by hoppin...
The aim of this thesis was to investigate crystal nucleation, growth and dissolution processes, focu...
A versatile in situ multi-microscopy approach to study the dissolution kinetics of single crystals i...
Growth and dissolution rate dispersion of boric acid single crystal was investigated in supersaturat...
The dissolution kinetics of individual microscale bicalutamide (BIC) form-I crystals are tracked ove...
Dissolution processes at single crystal surfaces often involve the initial formation and expansion o...
Using antisolvent crystallisation of salicylic acid as the model process, we report our experimental...
resolved crystal growth and dissolution kinetics by coupling in situ optical microscop
This thesis presents a multiple-scale experimental study of mineral dissolution kinetics, utilizing ...
Besides size and polymorphic form, crystal shape takes a central role in engineering advanced solid ...
Besides size and polymorphic form, crystal shape takes a central role in engineering advanced solid ...
There are a number of interesting and as yet unresolved problems concerning the dissolution rates an...
peer-reviewedGrowth of single salicylamide crystals was investigated in a nonstirred growth cuvette ...
Over the past decade there has been a natural drive to extend the investigation of dynamic surfaces ...
International audienceWhich conceptual framework should be preferred to develop mineral dissolution ...