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by
D'Angelo, Anthony J., author.
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viable electrolytes in energy storage devices due to their low flammability, adequate ionic conductivity
by
Arivu, Maalavan, author.
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facilitating delocalization of electron cloud on the catalytically active transition metal site, low anion
by
Rastogi, Tulika, author.
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Liquid phase epitaxy doping (LPE-D) is proposed as a facile low-temperature, low-cost replacement
by
Guo, Xiaoru, author. (orcid)0000-0002-5636-9312
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temperature of 180 °C leads to the best performing 2D nanomaterial hybrids for electrochemical catalysis
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Jhaveri, Janam, author.
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replacement of the high-temperature p-n junction with a low-temperature amorphous titanium dioxide (TiO2
by
Casey, Joanna Gordon, author.
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temperature and humidity, as well as potentially confounding gas species. The ability of low-cost gas sensors
by
Harris, Joshua B., author.
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-ion battery. The best performing electrolyte combination showed a low temperature discharge capacity increase
by
Lavernia, Alejandro C., author.
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Organic Rankine Cycle (ORC) technology is a popular method of achieving WHR from low temperature
by
Mishra, Kuber, author.
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stability. Finally, a low temperature aluminothermic reduction technique for the synthesis of porous Si was
by
Noelle, Daniel John, author.
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to probe resistance and consequent heat generation dynamics over resolute temperature and time scales
by
Billy, Joshua T., author.
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, which can be performed in aqueous solution at room temperature and atmospheric pressure. This CO2
by
Alam, Mohammad Fahd Ebna, author.
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oxygen content than its counterparts. The exceptionally low thermal diffusivity of xenon is identified to

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