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Application of thermally anisotropic composite materials coupled with a heat sink/source can redirect and reduce heat flows through a building envelope (walls and roofs).

The present disclosure on large area, high throughput processing and manufacturing technology attempts to establish a low-cost vacuum insulated glazing technology that utilizes a broad band photonic curing technology for glass strengthening, creates laser-assisted hermetic sea

Electricity generation from waste heat offers an enormous opportunity to recover energy back into the grid, and 75% resides in an ultralow form (<100°C).

Electricity generation from waste heat offers an enormous opportunity to recover energy back into the grid, and 75% resides in an ultralow form (<100°C).

The proposed wireless charging architecture utilizes the existing power electronics in an electric vehicle in a novel way to function as the rectifier thereby increasing the power density and cost effective.

This invention exceptionally improves the mechanical strength of PEO-, or poly(ethylene oxide), based solid polymer electrolytes without sacrificing ionic conductivity.

An advanced manufacturing method to produce complex 3D geometries from refractory ceramics (e.g. SiC and ZrC) and refractory metals has bee described.

In the pursuit of higher energy density batteries, solid state electrolytes must have high ionic conductivity, high shear modulus, good chemical stability and adhesion with metallic lithium.

Alternative energy module is a scalable power station that can be used to generate electricity to power instrumentation in remote areas where line power is not available.

The proposed technology is based on a novel organic Rankine cycle (ORC) to produce power at small scale (<10 kW) with an unprecedented reduction in cost ($0.8/W) and improved efficiency (>40%).