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Professor Glotzer’s research on computational assembly science and engineering aims toward predictive materials design of colloidal and soft matter, and is sponsored by the NSF, DOE, DOD and Simons Foundation. Among her notable findings, Glotzer’s introduction of the notion of “patchy particles,” a conceptual approach to nanoparticle design, has informed wide-ranging investigations of self-assembly. She showed that entropy alone can assemble shapes into many structures, which has implications for materials science, thermodynamics, mathematics, and nanotechnology. Her group’s “shape space diagram” shows how matter self-organizes based on the shapes of the constituent elements, making it possible to predict what kind of material—glass, crystal, liquid crystal, plastic crystal, or quasicrystal—will emerge.
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Nature Chemical Engineeringno. 1 (2024): 18-27
Emanuele Marino,Thi Vo, Cristian Gonzalez,Daniel J. Rosen,Steven J. Neuhaus,Alice Sciortino, Harshit Bharti,Austin W. Keller,Cherie R. Kagan,Marco Cannas,Fabrizio Messina,Sharon C. Glotzer,
Chemistry of Materials (2024)
NATURE SYNTHESISno. 2 (2024): 276-276
Science (New York, N.Y.)no. 6680 (2024): 312-319
Nature Synthesisno. 1 (2024): 131-131
Journal of the American Chemical Societyno. 11 (2023): 6280-6288
arxiv(2023)
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Wenbing Wu, Alain Kadar,Sang Hyun Lee,Bum Chul Park,Jeffery E. Raymond, Thomas K. Tsotsis, Carlos E. S. Cesnik,Sharon C. Glotzer,Valerie Goss,Nicholas A. Kotov
arXiv (Cornell University) (2023)
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