Hyogo, Japan

Misato Kunimatsu


Average Co-Inventor Count = 6.0

ph-index = 1


Company Filing History:


Years Active: 2023

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1 patent (USPTO):Explore Patents

Title: Innovator Spotlight: Misato Kunimatsu and Her Cutting-Edge Composite Separation Membrane

Introduction: Misato Kunimatsu, based in Hyogo, Japan, is a distinguished inventor recognized for her significant contribution to the field of liquid treatment technologies. With a focus on enhancing the efficiency and durability of separation membranes, she has developed a patented invention that stands out in its innovative composition and application.

Latest Patents: Kunimatsu holds a patent for a composite separation membrane, which excels not only in liquid permeable performance and separation efficacy but also in its durability. The core of this invention lies in its unique structure that combines a supporting base material with a complex layer. This complex layer consists of oxidized metal nanosheets, graphene oxide, and an alkanolamine, with at least one alkanolamine strategically positioned between the oxidized metal nanosheets. This design provides a robust solution particularly advantageous for liquid treatment processes.

Career Highlights: Misato Kunimatsu's career is marked by her tenure at Kobe University, where she applies her expertise in materials science and engineering to advance membrane technology. Her innovative work has garnered attention within academic and industrial circles, emphasizing her role as a key contributor to modern liquid treatment methodologies.

Collaborations: Throughout her career, Kunimatsu has collaborated with esteemed coworkers, including Keizo Nakagawa and Tomohiro Sera. Together, they have synergized their expertise, further enhancing their research and driving forward the development of innovative technologies in the field.

Conclusion: Misato Kunimatsu exemplifies the spirit of innovation with her groundbreaking invention of the composite separation membrane. Her work not only highlights her individual contributions but also reflects the collaborative efforts that drive technological advancements in liquid treatment. As her career progresses, the impact of her innovations is poised to inspire future developments in the field.

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