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Paulette Clancy, head of the Department of Chemical and Biomolecular Engineering, is known for her work in computational materials processing. She is the associate director of the Johns Hopkins Center for Integrated Structure-Mechanical Modeling and Simulation (CISMMS) and a fellow of the Hopkins Extreme Materials Institute (HEMI).
Clancy leads one of the top groups in the country studying atomic- and molecular-scale modeling of semiconductor materials, ranging from traditional silicon-based compounds to all-organic materials. Her group’s research comprises four main areas: advanced organic materials (covalent organic frameworks, antibacterial oligomers, organic electronics); algorithm development (force field development, machine learning, and Bayesian optimization); electronic materials (particularly III-IV semiconducting materials; and nucleation and crystal growth (hybrid organic/inorganic perovskites and quantum dot nanocrystals). Her lab focuses on studies of advanced materials processing and nucleation, including understanding the links between processing, structure and function.
Current projects include developing new Bayesian optimization methods to encode intuition, modeling woven materials, creating close-to-perfect quantum dots, and discovering polymorphs of electronic materials for shape memory applications.
A fierce advocate for the increased representation of women in engineering and the physical sciences, she was the founding chair of Women in Science and Engineering faculty in Cornell University’s College of Engineering. Among her awards for that advocacy are the American Institute of Chemical Engineers (AIChE) National Women’s Initiatives Mentoring Award, the Alice Cook Award for services promoting women in science at Cornell, and the Zellman Warhaft award for the promotion of diversity in Cornell’s College of Engineering. She has been a panel member of the Department of Energy Computing Leadership Program INCITE (Innovative and Novel Computational Impact on Theory and Experiment) and has held executive positions with the AIChE’s Computational Materials Science and Engineering Forum.
Clancy leads one of the top groups in the country studying atomic- and molecular-scale modeling of semiconductor materials, ranging from traditional silicon-based compounds to all-organic materials. Her group’s research comprises four main areas: advanced organic materials (covalent organic frameworks, antibacterial oligomers, organic electronics); algorithm development (force field development, machine learning, and Bayesian optimization); electronic materials (particularly III-IV semiconducting materials; and nucleation and crystal growth (hybrid organic/inorganic perovskites and quantum dot nanocrystals). Her lab focuses on studies of advanced materials processing and nucleation, including understanding the links between processing, structure and function.
Current projects include developing new Bayesian optimization methods to encode intuition, modeling woven materials, creating close-to-perfect quantum dots, and discovering polymorphs of electronic materials for shape memory applications.
A fierce advocate for the increased representation of women in engineering and the physical sciences, she was the founding chair of Women in Science and Engineering faculty in Cornell University’s College of Engineering. Among her awards for that advocacy are the American Institute of Chemical Engineers (AIChE) National Women’s Initiatives Mentoring Award, the Alice Cook Award for services promoting women in science at Cornell, and the Zellman Warhaft award for the promotion of diversity in Cornell’s College of Engineering. She has been a panel member of the Department of Energy Computing Leadership Program INCITE (Innovative and Novel Computational Impact on Theory and Experiment) and has held executive positions with the AIChE’s Computational Materials Science and Engineering Forum.
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Maitreyee Sharma Priyadarshini, Oluwaseun Romiluyi, Yiran Wang, Kumar Miskin,Connor Ganley,Paulette Clancy
MATERIALS HORIZONSno. 3 (2024): 781-791
CRYSTAL GROWTH & DESIGN (2024)
Sreenivas Raguraman,Maitreyee Sharma Priyadarshini, Tram Nguyen, Ryan McGovern, Andrew Kim,Adam J. Griebel,Paulette Clancy,Timothy P. Weihs
arxiv(2024)
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ADVANCED FUNCTIONAL MATERIALS (2023)
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Soft matterno. 44 (2023): 8625-8634
Angewandte Chemie (International ed. in English)no. 23 (2023)
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Journal of chemical theory and computationno. 21 (2023): 7861-7872
ACS applied polymer materialsno. 2 (2023): 1624-1624
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