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He is a member of the Materials Research Society, the American Chemical Society, and the Israel Polymers and Plastics Society.
Macromolecular materials, also known as polymers, are increasingly vital for advanced technological applications in such fields as microelectronics, telecommunications, biomedical engineering, energy, and aerospace. Superior materials can now be produced through the synergistic combination of very different types of materials within nanoscale blends and nanocomposites. The development of such materials depends upon innovative synthesis and processing techniques as well as upon an in-depth characterization of the resulting material. This in-depth characterization must encompass the molecular structure, crystalline structure, nanoscale morphology, thermal properties, mechanical properties, and properties that are related to the specific application of interest (e.g., conductivity, biodegradability, drug release rate).
Macromolecular materials, also known as polymers, are increasingly vital for advanced technological applications in such fields as microelectronics, telecommunications, biomedical engineering, energy, and aerospace. Superior materials can now be produced through the synergistic combination of very different types of materials within nanoscale blends and nanocomposites. The development of such materials depends upon innovative synthesis and processing techniques as well as upon an in-depth characterization of the resulting material. This in-depth characterization must encompass the molecular structure, crystalline structure, nanoscale morphology, thermal properties, mechanical properties, and properties that are related to the specific application of interest (e.g., conductivity, biodegradability, drug release rate).
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Dahiana Mayer,Michael S. Silverstein
POLYMER (2024): 126542
Journal of materials chemistry. B (2023)
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ACS APPLIED POLYMER MATERIALSno. 8 (2023): 5824-5833
ACS APPLIED POLYMER MATERIALSno. 9 (2023): 6920-6931
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JOURNAL OF POLYMER SCIENCEno. 1 (2022): 81-89
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