Victoria, Australia

Danielle Frances Kennedy

This inventor holds 2 USPTO granted patents, plus 1 CIPO patent and 1 EPO patent. Top assignee: Commonwealth Scientific and Industrial Research Organisation. Active years: 2018-2026.


% Patents Active = 100.0

 

 

Average Co-Inventor Count = 6.0

ph-index = 1


Company Filing History:


Years Active: 2018-2026

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2 patents (USPTO):Explore Patents

Title: Innovations of Danielle Frances Kennedy

Introduction

Danielle Frances Kennedy is a notable inventor based in Glen Waverley, Australia. She has made significant contributions to the field of membrane technology, particularly in processes utilizing selectively permeable membranes. Her work focuses on the synthesis of products through innovative methods that leverage hydrogen species.

Latest Patents

Danielle holds 1 patent for her invention titled "Processes utilising selectively permeable membranes." This patent relates to processes that utilize hydrogen species selectively permeable membranes for the synthesis of various products. The invention also encompasses methods for synthesizing ammonia through hydrogen insertion or hydrogenation reactions, utilizing these specialized membranes. The membranes are designed with a porous layer that contains multiple reactive sites, which include a metal species and a catalyst to promote reactions within the layer.

Career Highlights

Danielle is affiliated with the Commonwealth Scientific and Industrial Research Organisation, where she continues to advance her research and innovations. Her work has garnered attention for its potential applications in various industries, particularly in sustainable practices and energy efficiency.

Collaborations

Danielle has collaborated with esteemed colleagues such as Sukhvinder P Badwal and Sarbjit Singh Giddey, contributing to the advancement of research in her field.

Conclusion

Danielle Frances Kennedy's innovative work in selectively permeable membranes showcases her commitment to advancing technology and sustainability. Her contributions are paving the way for future developments in membrane processes and hydrogen utilization.

Profile summary based on public USPTO records.
Please report any incorrect information to [email protected]
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