Grenoble, France

Nguyet-Phuong Nguyen



Average Co-Inventor Count = 3.7

ph-index = 5

Forward Citations = 61(Granted Patents)


Company Filing History:


Years Active: 2007-2012

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8 patents (USPTO):Explore Patents

Title: The Innovative Contributions of Nguyet-Phuong Nguyen

Introduction: Nguyet-Phuong Nguyen is a pioneering inventor based in Grenoble, France, recognized for her significant contributions to the field of materials science and semiconductor technology. With a remarkable portfolio of eight patents, she has developed novel methods that enhance the efficiency and quality of thin layer transfers, showcasing her expertise and innovative mindset.

Latest Patents: Among her latest patents is a groundbreaking method for the self-supported transfer of a fine layer by pulsation after implantation or co-implantation. This method involves implanting ions to create an embrittled buried area in a source substrate, followed by a controlled localized energy pulse that facilitates the detachment of a thin layer. Additionally, she has patented a process that improves the quality of a thin layer through high-temperature thermal annealing. This technique allows for the formation of an embrittlement zone within a donor substrate, leading to a precise detachment of a thin removable layer while preventing defects at the detachment surface.

Career Highlights: Nguyet-Phuong Nguyen has worked with notable companies in the semiconductor field, including S.O.I.TEC Silicon on Insulator Technologies and Commissariat à l'Énergie Atomique. Her experience in these organizations has enabled her to lead innovations that push the boundaries of current technologies in thin layer transfers.

Collaborations: Throughout her career, Nguyen has collaborated with esteemed professionals such as Takeshi Akatsu and Nicolas Daval. These partnerships highlight her ability to work synergistically within teams to drive forward research and development in her field of expertise.

Conclusion: Nguyet-Phuong Nguyen embodies the spirit of innovation in the realm of material science and engineering. Her patents not only reflect her creativity and technical acumen but also contribute to advancing the industry, promising more efficient methods for thin layer transfers. As a leader in her field, she continues to inspire future generations of inventors and scientists.

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