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Understanding and designing materials at the molecular scale:
We work with experimentalists to better understand the molecular details of protein purification materials, water filtration membranes, and nanotextured surfaces, and to suggest novel improvements. The wide physical and chemical diversity of biomolecular processes strongly suggests that the possibilities for novel function in human-engineered materials are far, far beyond our current capabilities. Designed materials can draw from a much larger range of chemical structure and functionality than exists biologically; if we can add significant chemical diversity to nature's already impressive toolkit, what else can be created? Computational approaches provide a vitally important tool to help explore this enormously large materials space.
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论文共 185 篇作者统计合作学者相似作者
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JOURNAL OF CHEMICAL INFORMATION AND MODELINGno. 4 (2024): 1290-1305
Alison C. Leonard, Anika J. Friedman, Rachel Chayer, Brian M. Petersen,Joel Kaar,Michael R. Shirts,Timothy A. Whitehead
crossref(2024)
arxiv(2024)
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JOURNAL OF PHYSICAL CHEMISTRY Bno. 39 (2023): 8305-8316
Maruša Ramšak,Dominique A. Ramirez,Loren E. Hough,Michael R. Shirts,Sara Vidmar, Kristina Eleršič Filipič,Gregor Anderluh,Roman Jerala
Nature Communicationsno. 1 (2023): 1-15
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