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The vast majority of energy conversion technologies and industrial processes depend on heat exchangers for transferring heat between fluids.

Porous ceramic supported polymer layer membranes represent an important class of membranes that are mechanically rugged, chemically stable, and high-temperature tolerant.

A novel method for purifying relatively large batches of uranium.

Developing new technologies for the recycling of lithium-ion batteries is an urgent task because of their wide applications in electronics and electric vehicles.

Existing wireless power transfer systems require an identically-shaped transmitter and receiver, limiting the inter-operability between charging stations and vehicles. The invention eliminates the requirements and enable charging stations to work with a variety of EVs.

Biological conversion of plant biomass requires a microorganism that can eat all of the breakdown products of plant biomass.

Salt hydrates are very good thermal energy storage materials. However, encapsulation of salt hydrates in order to avoid the escape of water molecules attached to salt hydrates and further enhance the heat transfer rate from the salt hydrates is a formidable challenge.

Li-ion batteries used in energy storage and electrical vehicles have safety concerns due to the large amount of stored energy and their potential to go to thermal runaway.

The inventive method to fabricate the composite solid electrolyte film breaks away from the traditional mixing-then-casting method.

We have developed 3d printable, stimuli-responsive liquid crystalline networks (LCN) . The reaction allows for the preparation of LCNs with fast curing speed, high conversion, and uniform network structure.