This inventor holds 1 USPTO granted patent and 2 published patent applications. Top assignee: American Boronite Corporation. Active years: 2024.
Company Filing History:
Years Active: 2024
Title: Inventor Spotlight: Susanthri Chandima Perera
Introduction
Susanthri Chandima Perera, based in Cohoes, NY, is a notable inventor recognized for her contributions to the field of carbon nanotube synthesis. With one patent to her name, Perera has made significant strides in innovative methods that could have widespread applications in materials science and engineering.
Latest Patents
Perera's patent, titled "Synthesis of Quantum Carbon Nanotubes," presents groundbreaking systems and methods for producing a volume of predominantly armchair nanotubes with a predetermined chirality. The patent details the synthesis of metallic conducting armchair carbon nanotubes, specifically the (10,10), (11,11), and (12,12) configurations. The disclosed methods incorporate a unique carbon source enriched with ethylene and acetylene radicals, combined with an optimally balanced hydrogen to carbon ratio. This specialized composition aids in passivating non-armchair growth sites, thereby favoring the desired growth. Furthermore, the patent describes a tunable chemical vapor deposition (CVD) process, enabling the creation of catalysts with precise diameter distributions, crucial for synthesizing single-wall carbon nanotubes.
Career Highlights
Perera is affiliated with American Boronite Corporation, where she has been instrumental in advancing research and development efforts within the organization. Her innovative work in carbon nanotube technology exemplifies her commitment to pushing the boundaries of materials science.
Collaborations
Throughout her career, Perera has collaborated with esteemed colleagues such as David S. Lashmore and Pavel Bystricky. These partnerships have fostered a dynamic working environment, encouraging the exchange of ideas and enhancing the collective output of innovative research.
Conclusion
Susanthri Chandima Perera's contributions to the synthesis of quantum carbon nanotubes reflect her dedication to innovation and technological advancement. Her patent not only marks a significant achievement in her career but also establishes a foundation for future developments in carbon-based materials. As research continues to evolve, her work in this field may pave the way for new applications and breakthroughs.