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Sodium based NASICON-type phase and its method of preparation are described, where the sodium based NASICON-type phase is configured as both sodium and lithium ion conductor for solid-state batteries
Water is extremely scarce around the world with many water sources being contaminated with hazardous chemicals. Pollution of water sources continues to be a threat to human health and the environment.
High temperature cast aluminum alloys are a key technology to enable higher power density automobile engines. These engines are in demand because of the higher efficiency that comes from downsizing and boosting naturally aspirated engines.
A novel approach for enhancing the thermal conductivity of PCMs and enabling a simplified approach for fabrication of PCM heat exchangers or other thermal energy storage or temperature regulating devices employing PCMs has been developed.
The invention provides a cast iron based, high-strength oxidation resistant alloy.
Time-of-flight secondary ion mass spectrometry (ToF-SIMS) enables static chemical investigations in a wide range of materials and other systems.
This technology introduces an advanced machine learning approach for enhancing chemical imaging by correlating data from two mass spectrometry imaging (MSI) techniques.
The invention provides a rapid pyrolysis to form super ionic conducting lithium garnets
We have used liquid-liquid extraction separation to selectively remove sodium cation and potassium cation from the solution containing lithium chloride, by doing that in essence we increased the purity of the resultant lithium chloride solution.
The invention provides particular Al alloys suitable for additive manufacturing.