Ichihara, Japan

Atsushi Sato


 

Average Co-Inventor Count = 2.5

ph-index = 9

Forward Citations = 217(Granted Patents)

Forward Citations (Not Self Cited) = 212(Dec 10, 2025)


Location History:

  • Meitouku, Nagoya-shi, Aichi-ken, JP (1999)
  • Kushiro-shi, Hokkaido, JP (2000)
  • Aichi-ken, JP (2009)
  • Kariya, JP (1992 - 2010)
  • Toyota, JP (1999 - 2019)
  • Osaka, JP (2009 - 2019)
  • Itami, JP (2012 - 2019)
  • Ichihara, JP (2000 - 2020)
  • Chiba, JP (2022)
  • Sodegaura, JP (2017 - 2023)
  • Miyoshi, JP (2023)

Company Filing History:


Years Active: 1992-2025

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Areas of Expertise:
Solid Electrolyte
Sulfide Solid Electrolyte
Magnetic Core
Power Conversion Device
Melanocortin Receptor Agonists
Electric Power Steering
Fiber-Reinforced Resin
Ultrasonic Injection Mold
Valve Timing Control
Composite Material
Electrochemical Cell
52 patents (USPTO):Explore Patents

Title: Atsushi Sato: Pioneering Innovations in Sulfide Solid Electrolyte Technology

Introduction:

Throughout his illustrious career, Atsushi Sato, hailing from Ichihara, Japan, has demonstrated an exceptional aptitude for innovation and has become widely recognized for his inventive work. With an impressive portfolio of 49 patents to his name, Sato's expertise lies in the realm of sulfide solid electrolyte technology. This article delves into his latest patents, career highlights, notable collaborations, and the significance of his contributions to the field.

Latest Patents:

Sato's recent patents showcase his groundbreaking research and advancements in sulfide solid electrolytes:

1. Sulfide solid electrolyte: This patent describes an electrolyte composition containing lithium, phosphorus, and sulfur. The sulfide solid electrolyte exhibits two distinctive diffraction peaks, labeled as A (2θ=25.2±0.5 deg) and B (2θ=29.7±0.5 deg) when subjected to powder X-ray diffraction using CuKα rays. Additionally, the patent highlights the presence of crystallite diameters ranging from 5 to 20 nm, contributing to improved performance.

2. Sulfide solid electrolyte (composite): This patent presents a sulfide solid electrolyte that incorporates specific compounds (A) and (B) to enhance its properties. By leveraging these unique composition elements, Sato's invention opens doors to achieving superior performance characteristics in sulfide solid electrolyte technology.

Career Highlights:

Sato's remarkable career has been marked by numerous milestones and groundbreaking achievements. He has contributed significantly to the field of sulfide solid electrolytes, revolutionizing energy storage and beyond. Some noteworthy aspects of his career include:

1. Aisin Seiki Kabushiki Kaisha: Sato held a prominent position at Aisin Seiki Kabushiki Kaisha, a renowned Japanese automotive parts manufacturing company. During his tenure, he played a pivotal role in developing innovative solutions that improved energy storage systems in electric vehicles and paved the way for cleaner and more sustainable transportation options.

2. Sumitomo Electric Industries Limited: Sato also made valuable contributions at Sumitomo Electric Industries Limited, a global leader in the development and manufacturing of cutting-edge products and technologies. At this reputable firm, he continued to spearhead research efforts in the field of sulfide solid electrolytes, further enriching his expertise and advancing the boundaries of energy storage technology.

Collaborations:

In his pursuit of innovation, Sato has had the privilege of collaborating with some esteemed professionals in the field. Notable associates include:

1. Kazushi Kusawake: Kusawake, an accomplished researcher and scientist, has worked alongside Sato on several projects. Their collective expertise has led to breakthroughs in sulfide solid electrolyte materials and influenced the direction of future research endeavors.

2. Manabu Nomura: Nomura, another esteemed colleague, has partnered with Sato to explore novel applications of sulfide solid electrolyte technology. Together, they have made significant advancements in the field's fundamental understanding and practical implementations.

Conclusion:

Atsushi Sato's extensive contributions to sulfide solid electrolyte technology have propelled the field forward in terms of energy storage advancements. His notable patents, illustrious career, and collaborations with esteemed colleagues reflect his unwavering dedication to innovation. Sato's work continues to shape the landscape of energy storage solutions, inspiring future generations of scientists and inventors to explore new frontiers in this rapidly evolving field.

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