A novel application of the three-dimensional printing technology for the automation of solid phase extraction procedures in a low-pressure sequential injection analysis system is presented. A 3D printed device was used as a housing for nanofiber membranes in solid phase extraction. The applicability of the device is demonstrated with the extraction of substances of various physical-chemical properties. Pharmaceuticals including non-steroidal anti-inflammatory drugs, andhistaminics, and steroidal structures, as well as emerging pollutants such as bi-sphenols and pesticide metsulfuron methyl were used as model analytes to study the extraction performance of the nanofibers. Six different nanofiber types comprising polyamide, polyethylene, poly...
Charles University, Faculty of Pharmacy in Hradec Králové Training workplace Department of Analytica...
Molecularly imprinted nanoparticles were encapsulated into polymer nanofibers with a simple electros...
Sample preparation methods with high temporal resolution and matrix resistance will benefit fast dir...
Charles University Faculty of Pharmacy in Hradec Králové Department of Analytical Chemistry Candidat...
Charles University Faculty of Pharmacy in Hradec Králové Department of Analytical Chemistry Candidat...
Department: Department of Analytical Chemistry Candidate: Hedvika Raabová Supervisor: PharmDr. Lucie...
The development of advanced manufacturing techniques is crucial for the design of novel analytical t...
In the last 5 years, additive manufacturing (three-dimensional printing) has emerged as a highly val...
The development of a new, lower cost method for trace explosives recovery from complex samples is pr...
With the ability to create customizable products tailored to individual patients, the use of 3D prin...
With the ability to create customizable products tailored to individual patients, the use of 3D prin...
The work described in the thesis seeks to lay a foundation for a better understanding of the use of ...
Automated flow-based solid-phase extraction (SPE) is an advantageous tool for analytical sample pret...
3D printing is an emerging enabling technology that can facilitate the production of complex 3D stru...
Department: Department of Analytical Chemistry Candidate: Adam Valachovič Supervisor: doc. RNDr. Dal...
Charles University, Faculty of Pharmacy in Hradec Králové Training workplace Department of Analytica...
Molecularly imprinted nanoparticles were encapsulated into polymer nanofibers with a simple electros...
Sample preparation methods with high temporal resolution and matrix resistance will benefit fast dir...
Charles University Faculty of Pharmacy in Hradec Králové Department of Analytical Chemistry Candidat...
Charles University Faculty of Pharmacy in Hradec Králové Department of Analytical Chemistry Candidat...
Department: Department of Analytical Chemistry Candidate: Hedvika Raabová Supervisor: PharmDr. Lucie...
The development of advanced manufacturing techniques is crucial for the design of novel analytical t...
In the last 5 years, additive manufacturing (three-dimensional printing) has emerged as a highly val...
The development of a new, lower cost method for trace explosives recovery from complex samples is pr...
With the ability to create customizable products tailored to individual patients, the use of 3D prin...
With the ability to create customizable products tailored to individual patients, the use of 3D prin...
The work described in the thesis seeks to lay a foundation for a better understanding of the use of ...
Automated flow-based solid-phase extraction (SPE) is an advantageous tool for analytical sample pret...
3D printing is an emerging enabling technology that can facilitate the production of complex 3D stru...
Department: Department of Analytical Chemistry Candidate: Adam Valachovič Supervisor: doc. RNDr. Dal...
Charles University, Faculty of Pharmacy in Hradec Králové Training workplace Department of Analytica...
Molecularly imprinted nanoparticles were encapsulated into polymer nanofibers with a simple electros...
Sample preparation methods with high temporal resolution and matrix resistance will benefit fast dir...