The generation of solid salts of organic molecules is important to the chemical and pharmaceutical industry. Commonly used salt screening methods consume a lot of resources. We employed a combination of ion exchange screening and vapour diffusion for crystallization. This technique is semi-automatic and requires just nanoliters of the solution of the analyte to be crystallized. This high throughput screening yielded single crystals of sufficient size and quality for single-crystal X-ray structure determination using an in-house X-ray diffractometer. The broad scope of our method has been shown by challenging it with 7 very different organic cations, whose aqueous solubilities vary by a factor of almost 1000. At least one crystal structure f...
Most drugs are formulated, when possible, as salts, for their better technological parameters, such ...
Salt formation is used to optimize pharmaceutical properties for carboxylic acid drugs, but selectio...
Approximately 40% of newly synthesized drugs are not able to enter market due to biopharmaceutical i...
The generation of solid salts of organic molecules is important to the chemical and pharmaceutical i...
Multicomponent solid forms of active pharmaceutical ingredients represent a modern method of tuning ...
The Nano-Crystallization method has been extensively tested for the growth of single crystals of cat...
Increasing numbers of pharmaceutical drugs are being produced in salt form to improve bioavailabilit...
A bespoke database of crystalline structures of salt forms of active pharmaceutical ingredients has ...
Salt formation is a well-established method to increase the solubility of ionizable drug candidates....
This work details the creation of a library of 255 single crystal structures of systematically relat...
Single crystal X-ray diffraction analysis of small molecule active pharmaceutical ingredients is a k...
The salt formation of an active pharmaceutical ingredient (API) changes some physical and chemical p...
In this highlight, the reasons for the widespread interest generated by ionic co-crystals, namely th...
Pharmaceutical industries aim for continuous improvement in the manufacturing process of producing m...
Organic salt crystallisation is of great importance to the pharmaceutical industry as the majority o...
Most drugs are formulated, when possible, as salts, for their better technological parameters, such ...
Salt formation is used to optimize pharmaceutical properties for carboxylic acid drugs, but selectio...
Approximately 40% of newly synthesized drugs are not able to enter market due to biopharmaceutical i...
The generation of solid salts of organic molecules is important to the chemical and pharmaceutical i...
Multicomponent solid forms of active pharmaceutical ingredients represent a modern method of tuning ...
The Nano-Crystallization method has been extensively tested for the growth of single crystals of cat...
Increasing numbers of pharmaceutical drugs are being produced in salt form to improve bioavailabilit...
A bespoke database of crystalline structures of salt forms of active pharmaceutical ingredients has ...
Salt formation is a well-established method to increase the solubility of ionizable drug candidates....
This work details the creation of a library of 255 single crystal structures of systematically relat...
Single crystal X-ray diffraction analysis of small molecule active pharmaceutical ingredients is a k...
The salt formation of an active pharmaceutical ingredient (API) changes some physical and chemical p...
In this highlight, the reasons for the widespread interest generated by ionic co-crystals, namely th...
Pharmaceutical industries aim for continuous improvement in the manufacturing process of producing m...
Organic salt crystallisation is of great importance to the pharmaceutical industry as the majority o...
Most drugs are formulated, when possible, as salts, for their better technological parameters, such ...
Salt formation is used to optimize pharmaceutical properties for carboxylic acid drugs, but selectio...
Approximately 40% of newly synthesized drugs are not able to enter market due to biopharmaceutical i...