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Processing Technique for Ceramic- based Energy Conversion and Storage Devices
Due to rising carbon emissions, extreme weather events and other environmental threats, the demand for alternative energy sources is greater than ever. Therefore, businesses and communities are asking for three things: more affordable electricity, more resilient power, and cleaner energy. Fuel cells, electrolysis cells, membrane reactors, and solid-state...
Published: 10/27/2025
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Updated: 12/2/2020
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Inventor(s):
Hai Xiao
,
Jianhua Tong
,
Fei Peng
,
Kyle Brinkman
,
Jincheng Lei
,
Yuzhe Hong
,
Hua Huang
,
Shenglong Mu
,
Rajendra Bordia
Keywords(s):
Category(s):
Manufacturing
Non-aqueous 2D Material Based Hydrogen Isotope Separation
The separation of hydrogen isotopes from one another is desirable for multiple purposes including nuclear fusion reactors, medical imaging, and cancer therapy. Current separation technologies are aqueous based and utilize isotope exchange or distillation systems. These methods are extremely expensive with large energy consumptions. In addition, the...
Published: 3/17/2026
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Updated: 11/30/2020
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Inventor(s):
Kyle Brinkman
,
Timothy Krentz
,
Dale Hitchcock
,
Steven Serkiz
,
Josef Velten
Keywords(s):
Category(s):
Advanced Materials
Graphene Ceramic Composites for Hydrogen Separation Membranes
The Clemson composite membrane provides robust hydrogen separation from mixed gas streams by transport mechanisms based on mixed ionic (proton) and electronic conduction. The global hydrogen generation market has been valued at $115 Billion as of 2017 and is expected to rise to $154 billion by 2022. This growth is influenced by hydrogen’s use...
Published: 10/29/2025
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Updated: 11/6/2017
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Inventor(s):
Kyle Brinkman
,
Siwei Wang
,
Jian He
,
Yufei Liu
,
Fanglin Chen
,
Shumin Fang
Keywords(s):
Category(s):
Advanced Materials
Chemically-Stable Ceramic/Metal Composite Membrane for Hydrogen Separation
This ceramic-metal composite membrane demonstrates excellent hydrogen permeation flux to facilitate high performance in hydrogen separation. The global hydrogen generation market has been valued at $115 Billion as of 2017 and expected to rise to $154 billion by 2022. This growth is influenced by hydrogen’s use as a fuel source and other applications...
Published: 10/8/2024
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Updated: 11/1/2017
|
Inventor(s):
Kyle Brinkman
,
Fanglin Chen
,
Shumin Fang
Keywords(s):
Category(s):
Advanced Materials
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