The net reaction here is simply CO2 à C(solid) + O2(gas). In essence, it is based on the chemical absorption of CO2 via oxide molecules to form a carbonate, then electrochemical decomposition of that carbonate molecule back into its original oxide. SkyNano’s underlying technology is based upon a chemical process that has been studied since the early 1900s in academic labs across the globe. What is SkyNano's fundamental underlying technology? Soon after that, we got our first bit of funding from the Department of Energy’s Innovation Crossroads program, a lab-embedded entrepreneurial program, and the rest is history.Īnna Douglas, CEO, and Cary Pint, CTO, of SkyNano. We thought if we approached this topic from a nanomaterials synthesis background, we might be able to improve the selectivity which is required to bring the technology into the marketplace. ![]() My PhD advisor and I started looking into other ways to make carbon structures, which have a myriad of uses in battery chemistries, and discovered an electrochemical process that had been studied since the early 1900s to convert CO2 into solid carbon, but without a high selectivity for specific carbon structures. While I was studying batteries, I realized the way we synthesize and mine many materials that make up batteries really isn’t very sustainable, and can even undermine the use of batteries as a “clean” technology. I went to Vanderbilt to pursue a PhD in materials science and began working on nanomaterials for energy storage as a research topic, as I felt strongly that energy storage was (and is) the most significant bottleneck to a sustainable energy infrastructure. While I was an undergraduate student, I did a summer internship at NASA Glenn Research Center in Cleveland, OH and completely fell in love with nanotechnology and materials science. What's the background story of the SkyNano company formation? Part 2 will follow shortly and is geared to markets and climate solutions.ġ.
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