A porous network acts as transport paths for drugs through films for controlled drug release. The interconnectivity of the network strongly influences the transport properties. It is therefore important to quantify the interconnectivity and correlate it to transport properties for control and design of new films. This work presents a novel method for 3D visualisation and analysis of interconnectivity. High spatial resolution 3D data on porous polymer films for controlled drug release has been acquired using a focused ion beam (FIB) combined with a scanning electron microscope (SEM). The data analysis method enables visualisation of pore paths starting at a chosen inlet pore, dividing them into groups by length, enabling a more detailed quan...
Focused ion beam combined with scanning electron microscope (FIB-SEM) is a powerful tool that can be...
This PhD Thesis focuses mainly on the characterization of complex porous materials at the low microm...
International audienceThe advantage of using porous materials for biofuel cells and biosensors is th...
Porous networks are found in a wide range of different advanced and technologically important materi...
Porous polymer coatings are used to control drug release from pharmaceutical products. The coating c...
The characterization of the pore structure in pharmaceutical coatings is crucial for understanding a...
Pore geometry characterization-methods are important tools for understanding how pore structure infl...
Understanding how the pore structure influences the masstransport through a porous material is impor...
On developing the next generation sustainable soft materials, it is often crucial to understand and ...
Phase-separated polymer films are commonly used as coatings around pharmaceutical oral dosage forms ...
We have used Electron Tomography (ET) to reveal the detailed three-dimensional structure of particul...
Dataset and code used in M. Röding, et al, "Three-dimensional reconstruction of porous polymer films...
Drug release from oral pharmaceutical formulations can be modified by applying a polymeric coating f...
We present combined focused ion beam/scanning electron beam (FIB/SEM) tomography as innovative metho...
Polymer films based on mixtures of ethyl cellulose (EC) and hydroxypropyl cellulose (HPC) have been ...
Focused ion beam combined with scanning electron microscope (FIB-SEM) is a powerful tool that can be...
This PhD Thesis focuses mainly on the characterization of complex porous materials at the low microm...
International audienceThe advantage of using porous materials for biofuel cells and biosensors is th...
Porous networks are found in a wide range of different advanced and technologically important materi...
Porous polymer coatings are used to control drug release from pharmaceutical products. The coating c...
The characterization of the pore structure in pharmaceutical coatings is crucial for understanding a...
Pore geometry characterization-methods are important tools for understanding how pore structure infl...
Understanding how the pore structure influences the masstransport through a porous material is impor...
On developing the next generation sustainable soft materials, it is often crucial to understand and ...
Phase-separated polymer films are commonly used as coatings around pharmaceutical oral dosage forms ...
We have used Electron Tomography (ET) to reveal the detailed three-dimensional structure of particul...
Dataset and code used in M. Röding, et al, "Three-dimensional reconstruction of porous polymer films...
Drug release from oral pharmaceutical formulations can be modified by applying a polymeric coating f...
We present combined focused ion beam/scanning electron beam (FIB/SEM) tomography as innovative metho...
Polymer films based on mixtures of ethyl cellulose (EC) and hydroxypropyl cellulose (HPC) have been ...
Focused ion beam combined with scanning electron microscope (FIB-SEM) is a powerful tool that can be...
This PhD Thesis focuses mainly on the characterization of complex porous materials at the low microm...
International audienceThe advantage of using porous materials for biofuel cells and biosensors is th...