This inventor holds 2 USPTO granted patents. Top assignee: The University of New Mexico. Active years: 2018-2020.
Company Filing History:
Years Active: 2018-2020
Title: Innovations of Diane Dickie
Introduction
Diane Dickie is a prominent inventor based in Albuquerque, NM (US). She has made significant contributions to the field of nanomaterials and carbon dioxide transformation. With a total of 2 patents, her work is paving the way for advancements in energy applications and environmental sustainability.
Latest Patents
Diane's latest patents include "Metal phosphide nanomaterials prepared from single source metal amides." This invention provides a novel solution for creating metal phosphide (MP) nanomaterials through the thermal decomposition of metal bis[bis(diisopropylphosphino)amide]. These synthetic routes to MP nanomaterials have potential applications in batteries, semiconductors, magnets, catalysts, lasers, inks, electrocatalysts, and photodiodes. Another significant patent is "Carbon dioxide transformation facilitated by earth abundant metals." This patent describes novel complexes of various earth-abundant, inexpensive transition or main group metals that facilitate the transformation of carbon dioxide into more useful organic products. These complexes can bind and alter carbon monoxide at mild conditions, enabling the electrochemical conversion of CO into new products.
Career Highlights
Diane Dickie is affiliated with the University of New Mexico, where she conducts her research and development. Her work is recognized for its innovative approach to addressing critical challenges in energy and environmental science.
Collaborations
Diane collaborates with notable colleagues, including Richard Alan Kemp and Elizabeth S Donovan. Their combined expertise enhances the impact of their research and innovations.
Conclusion
Diane Dickie's contributions to the fields of nanomaterials and carbon dioxide transformation exemplify her commitment to innovation and sustainability. Her patents reflect a forward-thinking approach that addresses pressing global challenges.
