Toronto, Canada

Francisco Pelayo Garcia De Arquer

USPTO Granted Patents = 1 

Average Co-Inventor Count = 7.0

ph-index = 1


Company Filing History:


Years Active: 2023

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1 patent (USPTO):Explore Patents

Title: Innovations of Francisco Pelayo Garcia De Arquer

Introduction

Francisco Pelayo Garcia De Arquer is a notable inventor based in Toronto, Canada. He has made significant contributions to the field of optoelectronic devices through his innovative research and patents. His work focuses on enhancing the stability and performance of nanocrystals, which are crucial for various technological applications.

Latest Patents

Garcia De Arquer holds a patent titled "Passivation of nanocrystals tailored to different facets, and its application to optoelectronic devices." This patent describes a method for facet-selective passivation on each crystal facet of colloidal nanocrystals via a solution-phase ligand exchange process. The method provides highly-passivated and colloidally-stable nanocrystal inks, addressing both polar and non-polar facets to prevent deleterious nanocrystal aggregation. The introduction of alkali metal organic complexes during metal halide conventional solution exchanges plays a key role in stabilizing and passivating these facets, leading to improved photophysical properties and stability of the resulting nanocrystal solid films.

Career Highlights

Garcia De Arquer's career is marked by his dedication to advancing the field of nanotechnology. His innovative approaches have garnered attention and recognition within the scientific community. He continues to work at QD Solar Inc., where he applies his expertise to develop cutting-edge solutions in optoelectronic devices.

Collaborations

Garcia De Arquer collaborates with esteemed colleagues, including Younghoon Kim and Fanglin Che. Their combined efforts contribute to the advancement of research in nanocrystals and their applications.

Conclusion

Francisco Pelayo Garcia De Arquer is a pioneering inventor whose work in nanocrystal passivation has significant implications for optoelectronic devices. His innovative methods and collaborations continue to push the boundaries of technology and research in this field.

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