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- Tomonori Saito
- Gabriel M Veith
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- Praveen K Cheekatamarla, Ph.D.
- Priyanshi Agrawal
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- Riley C Wallace
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- Rose A Montgomery
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- Zhenzhen Yang
- Zhili Feng
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Hydrogen production from biomass via a pyrolysis-microbial electrolysis process is described.
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A novel method based on nanoconfining conductive liquids within the hollow structure is developed for the fabrication of a class of solid electrolytes with liquid-like room-temperature ionic conductivities (above 1 mS cm-1).
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As biofuel production from cellulosic sugars increases, there is an increasing need for technologies that add value to lignin-rich streams. Isobutene is a high value, large market chemical.
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The invention relates to building systems and more specifically to improving the energy efficiency of comfort air systems.
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Stable lithium borate salts were synthesized and tested for application in lithium ion batteries. Without using any additives, these new salts are not only compatible with 4.0V cathodes such as LiCoO2 and LiMn2O4 etc.
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The invention relates to materials and more specifically to materials for improvements to tires for reduced fuel consumption.
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The present invention comprises a non-precious-metal electrocatalyst that can convert CO2 in water(in the form of CO2 bubbled through a carbonate solution) directly to ethanol.
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A gene is a key regulator of plant cell wall biosynthesis. Change in the expression level of this gene in Populus plants results in altered cell wall chemistry.
![default image](/themes/custom/ornl/images/default-thumbnail.jpg)
This gene (PtDUF231, Potri.009G072800.1) is a key regulator of plant cell wall biosynthesis. Change in the expression level of this gene in Populus plants will result in altered cell wall chemistry.
![default image](/themes/custom/ornl/images/default-thumbnail.jpg)
This gene (PtDUF266, Potri.011G009500.1) is a key regulator of plant cell wall biosynthesis. Change in the expression of this gene in Populus plants will result in altered cell wall chemistry.