Man with short brown hair and glasses wearing a blue sweater, smiling against a light background.

Jeremy Krogman, PhD.

CAS Lead Scientist, Materials

Bio

Dr. Jeremy Krogman earned his Ph.D. in Chemistry from Brandeis University and was further trained at M.I.T. as a research fellow Before joining CAS, he served as an assistant professor at ShanghaiTech University. Since 2021, he has worked as an Information Scientist at CAS, contributing to the document curation process. Jeremy also collaborates with CAS's Science Connect team and has led many research projects focused on energy, sustainability, and chemistry topics.

Green molecular spheres joined by bonds, suggesting a liquid solvent, on a green background.

Deep eutectic solvents: Sustainable alternatives for greener manufacturing

Deep eutectic solvents are key innovations for green chemistry. They’re cost-effective, environmentally friendly substances that can be used in drug delivery, wastewater treatment, and environmental clean-up. Researchers are finding new substances that make them more effective.
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Layered purple and blue geometric planes representing two-dimensional MXene material sheets.

Capacitors, catalysts and coatings: MXenes drive industrial innovations

2D materials like graphene and carbon nanotubes are revolutionizing materials science, and now MXenes are introducing even greater adaptability and high-performance properties. Find out why MXenes are versatile industrial materials.
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Aerial view of a dense green forest canopy.

Fossil fuels to biofuels: How biomass can drive sustainability

Biomass is currently just a fraction of our energy sources, but with more sustainable feedstocks and conversion processes, biomass-based chemicals and fuels could become common replacements for fossil fuel-based materials.
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Illuminated oil refinery and storage tanks beside water at dusk.

Carbon capture technology is ready to expand into industrial usage

A recent spike in patents reveals how carbon capture technology is ready to support industrial decarbonization efforts.
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Ball-and-stick model of a covalent organic framework lattice on a black background.

Covalent Organic Frameworks (COFs) are driving breakthroughs in renewable energy and biomedicine

With their porosity, stability, and tunable properties, COFs can be used like Nobel Prize-winning MOFs in catalysis, biosensors, and other applications while being more sustainable.
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