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Nature Reviews. Materials|June 25, 2021
Nanofibrils in nature and materials engineeringShengjie Ling, David L Kaplan, Markus J BuehlerNature|November 14, 2003
Hyperelasticity governs dynamic fracture at a critical length scaleMarkus J Buehler, Farid F Abraham, Huajian GaoJournal of Physics. Condensed Matter : an Institute of Physics Journal|August 8, 2015
Crumpling deformation regimes of monolayer graphene on substrate: a molecular mechanics studyTalal Al-Mulla, Zhao Qin, Markus J BuehlerBiochemistry|August 25, 2010
Mutations alter the geometry and mechanical properties of Alzheimer's Aβ(1-40) amyloid fibrilsRaffaella Paparcone, Matthew A Pires, Markus J BuehlerNanoscale|April 24, 2023
Bond clusters control rupture force limit in shear loaded histidine-Ni<sup>2+</sup> metal-coordinated proteinsEesha Khare, Darshdeep S Grewal, Markus J BuehlerBiomacromolecules|June 4, 2014
Role of intrafibrillar collagen mineralization in defining the compressive properties of nascent boneArun K Nair, Alfonso Gautieri, Markus J BuehlerBioinspiration & Biomimetics|October 26, 2021
Bioinspired translation of classical music into<i>de novo</i>protein structures using deep learning and molecular modelingMario Milazzo, Grace I Anderson, Markus J BuehlerScientific Reports|February 9, 2020
The Order-Disorder Continuum: Linking Predictions of Protein Structure and Disorder through Molecular SimulationClaire C Hsu, Markus J Buehler, Anna TarakanovaScience Advances|February 7, 2024
ForceGen: End-to-end de novo protein generation based on nonlinear mechanical unfolding responses using a language diffusion modelBo Ni, David L Kaplan, Markus J BuehlerArxiv|October 31, 2023
ForceGen: End-to-end <i>de novo</i> protein generation based on nonlinear mechanical unfolding responses using a protein language diffusion modelBo Ni, David L Kaplan, Markus J BuehlerPageof 31