Berwyn Heights, MD, United States of America

Mario G Urdaneta

USPTO Granted Patents = 2 

Average Co-Inventor Count = 3.4

ph-index = 2

Forward Citations = 32(Granted Patents)


Company Filing History:


Years Active: 2010-2014

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2 patents (USPTO):Explore Patents

Title: Innovations by Mario G Urdaneta: Pioneering Advances in Radiation Detection and Materials Science

Introduction

Mario G Urdaneta, an innovative inventor based in Berwyn Heights, MD, has made significant contributions to the fields of radiation detection and materials science. With two patents to his name, Urdaneta's work exemplifies the potential of integrating advanced materials for improved technological applications.

Latest Patents

Urdaneta's latest patents include groundbreaking inventions such as "Structures for radiation detection and energy conversion using quantum dots." This invention utilizes inorganic semiconducting materials, particularly silicon, as a host matrix for quantum dots, which provide enhanced functionality in radiation detection and energy conversion. Techniques like chemical vapor deposition or atomic layer deposition facilitate the incorporation of materials sensitive to neutron detection, such as boron-containing compounds. Moreover, the design of electrodes extending deep into the host matrix is aimed at improving efficiency, while machining the matrix to create pores further enhances device performance.

Another notable patent is for "Electrically conductive metal impregnated elastomer materials and methods of forming electrically conductive metal impregnated elastomer materials." In this innovation, Urdaneta describes a method to create a compliant elastomer that is impregnated with metal. The process begins with combining a metal salt with an elastomer precursor and curing this mixture. A chemical reduction process converts some of the metal salt to metal, enhancing the mechanical and electrical properties of the final elastomer material.

Career Highlights

Throughout his career, Mario G Urdaneta has contributed to influential organizations such as the University System of Maryland and Weinberg Medical Physics Inc. His work in these institutions has strongly impacted research and education in physics and engineering, driving forward new innovations in various applications.

Collaborations

Urdaneta has collaborated with esteemed colleagues like Elisabeth Smela and Remi Delille, further enriching his research through shared expertise and innovative insights. These collaborations have not only enhanced his projects but have also contributed to the broader scientific community's understanding of advanced materials and their applications.

Conclusion

In summary, Mario G Urdaneta stands as a prominent figure in the realm of innovation, with his patents offering significant advancements in both radiation detection and materials science. His continued work exemplifies the importance of integrating new technologies with established scientific principles, paving the way for future innovations.

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