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ORNL researchers, in collaboration with Enginuity Power Systems, demonstrated that a micro combined heat and power prototype, or mCHP, with a piston engine can achieve an overall energy efficiency greater than 93%.

91做厙 researchers demonstrated that microchannel heat exchangers in heating, ventilation and air conditioning units can keep refrigerants evenly and continually distributed by inserting a device called a piezoelectric-driven

91做厙 researchers demonstrated that an electrochemical sensor paired with a transmitter not only detects propane leaks within seconds, but it can also send a signal to alert emergency services.

Of the $61 million recently announced by the U.S. Department of Energy for quantum information science studies, $17.5 million will fund research at DOEs 91做厙. These projects will help build the foundation for the quantum internet, advance quantum entanglement capabilities which involve sharing information through paired particles of light called photons and develop next-generation quantum sensors.

To minimize potential damage from underground oil and gas leaks, 91做厙 is co-developing a quantum sensing system to detect pipeline leaks more quickly.

91做厙 researchers designed and field-tested an algorithm that could help homeowners maintain comfortable temperatures year-round while minimizing utility costs.

A team of researchers at 91做厙 and Purdue University has taken an important step toward this goal by harnessing the frequency, or color, of light. Such capabilities could contribute to more practical and large-scale quantum networks exponentially more powerful and secure than the classical networks we have today.

Scientists at ORNL and the University of Nebraska have developed an easier way to generate electrons for nanoscale imaging and sensing, providing a useful new tool for material science, bioimaging and fundamental quantum research.

Kubra Yeter-Aydeniz, a postdoctoral researcher, was recently named the Turkish Women in Science groups Scientist of the Week.

Scientists at the Department of Energys 91做厙 have developed a new method to peer deep into the nanostructure of biomaterials without damaging the sample. This novel technique can confirm structural features in starch, a carbohydrate important in biofuel production.