Location History:
- Detroit, MI (US) (1988)
- Livermore, CA (US) (2022)
Company Filing History:
Years Active: 1988-2025
Title: Keith David Morrison: Innovator in Antimicrobial Compositions
Introduction
Keith David Morrison is a notable inventor based in Livermore, CA (US). He has made significant contributions to the field of synthetic antimicrobial compositions, holding a total of 3 patents. His work focuses on developing innovative solutions for treating various medical conditions.
Latest Patents
Morrison's latest patents include groundbreaking advancements in synthetic antimicrobial mineral compositions. One of his notable inventions involves pharmaceutical compositions that comprise a Fe-exchanged fluorinated synthetic smectite and a synthetic semiconducting metal sulfide. These compositions are designed to treat topical conditions and gastrointestinal ailments. They can also be incorporated into wound dressings, hydrogels, personal protective equipment, and 3D printed articles. Additionally, he has developed soluble metallogels that include antimicrobial silver metallogels. This product features a metallogel material with metal ions dispersed in an assembly containing an organic compound. The method for creating this metallogel involves combining a metal salt, an organic compound precursor, and a glyme.
Career Highlights
Throughout his career, Morrison has worked with Lawrence Livermore National Security, LLC, contributing to various innovative projects. His expertise in synthetic materials and antimicrobial solutions has positioned him as a key figure in his field.
Collaborations
Morrison has collaborated with notable colleagues, including Gabriela G Loots and Ty James Samo. These partnerships have further enhanced his research and development efforts.
Conclusion
Keith David Morrison's contributions to the field of antimicrobial compositions demonstrate his commitment to innovation and improving healthcare solutions. His patents reflect a deep understanding of material science and its applications in medicine.