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Previous attempts to utilize aluminum anodes in batteries were plagued by high corrosion rates, parasitic hydrogen evolution, and sluggish response due to the formation of an oxide layer on the aluminum electrode surface. The objective of this project is to develop an al

A novel approach is presented for producing large volumes of solar cell material at a fraction of the manufacturing costs of today’s solar cells.

The invention relates to the use of micro/nano-mechanical oscillators to detect electric and electromagnetic fields. Time varying electric field sensing is usually achieved using an antenna and receiver.

Low-cost, wide-area, Ferroelectric and Multiferroic, (111)-, (101)-, and (001)-oriented polycrystalline BiFeO3 films are supported by RABiTS substrates and specific arrangements of buffer, barrier, and seed layers.

The electrochemical energy storage systems based on Li-based insertion and reconstitution chemistries are a vital component of future energy technologies.

The concept presented in the technical description is summarized here.

The basic idea is to use a chemical solution based seed layer of the double perovskite phase for growing the seed layer on RABiTS tapes.

The basic idea is to use a cap layer of a double perovskite phase for growing the superconducting film. Since this phase has a large lattice mismatch with REBCO or YBCO films, it is expected that the c-axis of YBCO phase will sharply tilt towards the substrate normal.

A new type of high efficiency, low grade waste heat energy converter is disclosed that can be used to actively cool electronic devices, computer systems, data centers and larger waste heat producing systems, while generating electricity that can be used to power monitoring se

The present state of the art of head-end for the processing of commercial spent nuclear fuel is fraught with technical difficulties that make it almost prohibitively expensive.