Paris, France

Mahmoud Aldissi


Average Co-Inventor Count = 6.0

ph-index = 1

Forward Citations = 6(Granted Patents)


Company Filing History:


Years Active: 1984

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1 patent (USPTO):Explore Patents

Title: The Innovative Journey of Mahmoud Aldissi in Organic Semiconductor Development

Introduction: Mahmoud Aldissi, located in Paris, France, is an accomplished inventor known for his contributions to the field of organic semiconductors. With one patent to his name, he has made significant strides in enhancing the stability and conductivity of polyacetylene materials. His innovative approach promises to revolutionize the way we utilize polymers in electronic applications.

Latest Patents: Aldissi's patent focuses on a high stability conductive polyacetylene material and the process for its creation. This invention relates to a doped polyacetylene film that can function as either an organic semiconductor or a metallic conductor. By ensuring the doping process is more homogeneous, Aldissi’s invention significantly improves the stability of the material over time. The method involves the use of salts from transition metals, such as chromium, nickel, iron, titanium, tungsten, and molybdenum, or lanthanide elements like europium and ytterbium. Doping is achieved by immersing the polyacetylene film in a low-concentration solution, such as toluene, and maintaining it at low pressure and ordinary temperature for a few days, which is tailored to achieve the desired doping level and conductivity.

Career Highlights: Mahmoud Aldissi’s career is marked by his role at Thomson-CSF, a notable company in the field of electronics and technology. His work has not only highlighted his innovative spirit but also contributed to advancements in materials science and semiconductor technology.

Collaborations: Throughout his career, Aldissi has had the opportunity to collaborate with talented coworkers, including Jean Claude Dubois and Maryse Gazard. Their combined expertise in research and development has fostered an environment of creativity and progress, enabling innovative solutions and further enhancing the work done in organic semiconductor materials.

Conclusion: Mahmoud Aldissi's contribution to the development of high stability conductive polyacetylene materials showcases his ability to innovate within the field of organic semiconductors. His patent demonstrates not only a significant technological advancement but also the potential for future applications in electronics. As he continues to work with his colleagues at Thomson-CSF, the impact of his inventions is sure to resonate within the industry for years to come.

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