Difference between revisions of "Joanna Aizenberg"

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(Reprint can be downloaded from the Aizenberg group web page - http://www.seas.harvard.edu/aizenberg_lab/publications.html)
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[[Self-Organization of a Mesoscale Bristle into Ordered, Hierarchical Helical Assemblies ]], Boaz Pokroy, Sung H. Kang, L. Mahadevan, Joanna Aizenberg, Science 2009,
 
[[Self-Organization of a Mesoscale Bristle into Ordered, Hierarchical Helical Assemblies ]], Boaz Pokroy, Sung H. Kang, L. Mahadevan, Joanna Aizenberg, Science 2009,
323, 237-240. (Reprint to be linked.) (Reprint can be downloaded from Aizenberg group web page - http://www.seas.harvard.edu/aizenberg_lab/publications.html)
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323, 237-240. (Reprint to be linked.)  
  
 
[[Controlled Switching of the Wetting Behavior of Biomimetic Surfaces with Hydrogel-Supported Nanostructures]], A. Sidorenko, T. Krupenkin, J. Aizenberg, invited paper, J. Mater. Chem. 2008, 18, 3841-3846.   
 
[[Controlled Switching of the Wetting Behavior of Biomimetic Surfaces with Hydrogel-Supported Nanostructures]], A. Sidorenko, T. Krupenkin, J. Aizenberg, invited paper, J. Mater. Chem. 2008, 18, 3841-3846.   

Revision as of 02:13, 25 February 2009

(Reprint can be downloaded from the Aizenberg group web page - http://www.seas.harvard.edu/aizenberg_lab/publications.html)

Self-Organization of a Mesoscale Bristle into Ordered, Hierarchical Helical Assemblies , Boaz Pokroy, Sung H. Kang, L. Mahadevan, Joanna Aizenberg, Science 2009, 323, 237-240. (Reprint to be linked.)

Controlled Switching of the Wetting Behavior of Biomimetic Surfaces with Hydrogel-Supported Nanostructures, A. Sidorenko, T. Krupenkin, J. Aizenberg, invited paper, J. Mater. Chem. 2008, 18, 3841-3846.

Reversible Switching of Hydrogel-Actuated Nanostructures into Complex Micropatterns, A. Sidorenko, T. Krupenkin, A. Taylor, P. Fratzl, J. Aizenberg, Science 2007, 315, 487-490.

Skeleton of Euplectella sp.: Structural Hierarchy from the Nanoscale to the Macroscale, J. Aizenberg, J. C. Weaver, M. S. Thanawala, V. C. Sundar, D. E. Morse, P. Fratzl, Science 2005, 309, 275-278.

Patterned Colloidal Deposition Controlled by Electrostatic and Capillary Forces, J. Aizenberg, P. V. Braun, P. Wiltzius, Phys. Rev. Lett., 2000, 84, 2997-3000.