This inventor holds 1 USPTO granted patent. Top assignees: Midwest Superconductivity, Inc., University of Arkansas. Active years: 1998.
Company Filing History:

Years Active: 1998
Title: Iatneng Chan: Innovator in Superconducting Materials
Introduction
Iatneng Chan is a notable inventor based in Fayetteville, Arkansas, recognized for his contributions to the field of superconducting materials. His innovative work has led to advancements in the fabrication of thin film superconductors, which have significant implications for various technological applications.
Latest Patents
Iatneng Chan holds a patent for a method of fabricating thin film superconducting materials. This patent describes improved superconducting thin films that exhibit very high critical temperature (T.sub.c) and critical current density (J.sub.c) values, specifically greater than or equal to 120K and 10.sup.5 A/cm.sup.2, respectively. The films are designed to be deposited on compatible substrates and include a superconductive material, most preferably Tl.sub.2 Ba.sub.2 Ca.sub.2 Cu.sub.3 O.sub.10, with up to about 10% elemental gold mixed in. The preferred method involves forming a non-superconducting precursor film on a compatible substrate, which is then sintered with an unsintered bulk body containing thallium to create the desired superconductor material.
Career Highlights
Throughout his career, Iatneng Chan has worked with various organizations, including Midwest Superconductivity, Inc. and the University of Arkansas. His experience in these institutions has allowed him to further his research and development in superconducting technologies.
Collaborations
Iatneng Chan has collaborated with notable colleagues such as Ying Xin and Bingruo Xu, contributing to the advancement of superconducting materials through shared expertise and innovative ideas.
Conclusion
Iatneng Chan's work in the field of superconducting materials exemplifies the impact of innovative research on technology. His patent and collaborations highlight his significant contributions to the advancement of superconducting thin films.