Building things so small that they are smaller than the width of a human hair was previously achieved by using a method ...
AZoM on MSN
Polymer upcycling via reactive extrusion: FTIR microscopy unlocks blend compatibilization insights
Discover how polymer upcycling through reactive extrusion and FTIR microscopy enables enhanced blend compatibilization for sustainable materials.
Hydrogels are among the most widely studied biomaterials in modern drug delivery research. Their high hydrophilicity, ...
Discover how Raman spectroscopy enables rapid identification of fishing gear polymers.
Learn how pyrolysis–GC/MS delivers molecular-level insight for precise polymer characterization. Understand how low sample-prep variability improves data quality and reproducibility. Explore how ...
The rapid advancement of additive manufacturing (AM), as for example powder bed fusion (PBF), has revolutionized industries ranging from aerospace to healthcare. Since AM continues to expand and is ...
Nanomaterials are used in various fields due to their distinct size-dependent properties, and accurate characterization is essential to optimize and design them for specific applications. 1 For ...
Abstract: The aim of this study is to investigate the extracted Nypa fruticans as an alternative biomaterial used for 3D printing application in the biomedical and pharmaceutical. An important ...
Some results have been hidden because they may be inaccessible to you
Show inaccessible results