Company Filing History:
Years Active: 2000-2002
Title: Yanjing Liu: Innovator in Molecular Self-Assembly and Thin Film Technologies
Introduction
Yanjing Liu is a prominent inventor based in Blacksburg, VA (US). She has made significant contributions to the fields of molecular self-assembly and piezoelectric materials. With a total of 5 patents, her work has advanced the understanding and application of these technologies.
Latest Patents
One of her latest patents is focused on patterned molecular self-assembly. This innovation involves a support with an exposed patterned surface and a non-patterned surface, where a compound is selectively adsorbed on the exposed patterned surface. The compound may consist of a first compound selectively adsorbed on the exposed patterned surface and a second compound adsorbed on the first compound to create at least one bilayer. Additionally, the assembly may include multiple sets of bilayers with varying compositions.
Another notable patent is related to electrostrictive and piezoelectric thin film assemblies. This method of electrostatic self-assembly fabricates thin films that are thinner than those produced by conventional methods. It also ensures excellent molecular-level uniformity and precise structural control, resulting in large, effective piezoelectric coefficients. The thin film assembly includes a substrate and a film with one or more layers, where at least one layer contains a dipolar material with a uniform thickness of no more than 500 nm.
Career Highlights
Yanjing Liu has worked with several organizations, including Virginia Tech Intellectual Properties, Inc. and Nanosonic, Inc. Her experience in these companies has allowed her to develop and refine her innovative ideas in the field of materials science.
Collaborations
Throughout her career, Yanjing has collaborated with notable individuals such as Richard O Claus and Guy A Schick. These collaborations have contributed to her success and the advancement of her research.
Conclusion
Yanjing Liu is a remarkable inventor whose work in molecular self-assembly and piezoelectric materials has made a significant impact in her field. Her innovative patents and collaborations highlight her dedication to advancing technology.