This inventor holds 1 USPTO granted patent and 3 published patent applications. Top assignee: Leland Stanford Junior University. Active years: 2011.
Company Filing History:
Years Active: 2011
Title: Innovations of Margaret C. Morse
Introduction
Margaret C. Morse is a notable inventor based in Stanford, California. She has made significant contributions to the field of biocomposites, particularly through her innovative work on bacterial poly(hydroxy alkanoate) polymers. Her research focuses on sustainable materials that can be produced from organic waste, showcasing her commitment to environmental sustainability.
Latest Patents
Margaret C. Morse holds a patent for a "Bacterial poly(hydroxy alkanoate) polymer and natural fiber composites." This invention involves the production of a biocomposite made from natural fiber fabrics embedded in a matrix of biosynthetic polyhydroxy-alkanoate (PHA) polymers. The PHA is synthesized using aerobic microbial biosynthesis with mixed bacterial cultures and feedstock derived from the anaerobic degradation of organic waste materials. The invention allows for the addition of monomers to control the mechanical properties of the resulting biocomposite. Furthermore, the natural fibers and PHA can be pretreated to enhance the bond between them and improve water absorption resistance.
Career Highlights
Margaret C. Morse is affiliated with Leland Stanford Junior University, where she conducts her research and development work. Her innovative approach to creating sustainable materials has garnered attention in the scientific community. She has successfully combined her expertise in microbiology and materials science to develop eco-friendly solutions.
Collaborations
Margaret has collaborated with esteemed colleagues such as Sarah Billington and Craig S. Criddle. Their joint efforts have contributed to advancing research in the field of biocomposites and sustainable materials.
Conclusion
Margaret C. Morse's work exemplifies the intersection of innovation and sustainability. Her contributions to the development of biocomposites highlight the potential for using organic waste materials in creating valuable products. Her research continues to inspire advancements in environmentally friendly technologies.
