Engineering and TechnologyNATURE COMMUNICATIONS
Nano-topology optimization for materials design with atom-by-atom control
C. Chen, D. C. Chrzan, et al.
Discover the groundbreaking "Nano-Topology Optimization (Nano-TO)" method developed by Chun-Teh Chen, Daryl C. Chrzan, and Grace X. Gu, enabling the design of nanostructured materials with unparalleled elastic properties. This innovative approach outperforms existing TPMS structures and the Hashin-Shtrikman upper bound, paving the way for novel materials without predetermined designs.
Related Publications
Explore these studies to deepen your understanding
Adjacent work that informs or extends this paper's methodology and findings.
Medicine and Health
Echocardiographic screening for heart failure and optimization of the care pathway for individuals with pacemakers: a randomized controlled trial
M. F. Paton, J. Gierula, et al.
Engineering and Technology
Deep-learning-based image segmentation integrated with optical microscopy for automatically searching for two-dimensional materials
S. Masubuchi, E. Watanabe, et al.
Engineering and Technology
Reinforcement Learning Based Topology Control for UAV Networks
T. Yoo, S. Lee, et al.
Chemistry
Catalytic polymer self-cleavage for CO₂ generation before combustion empowers materials with fire safety
W. Luo, M. Chen, et al.

