2014
Content tagged with 2014
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News
The recent paper "Hierarchical structural control of visual properties in self-assembled photonic-plasmonic pigments" is selected as a Spotlight article in the Virtual Journal for Biomedical Optics.
Wyss Institute launches ‘SLIPS’ company
News
The Wyss Institute announces the launch of SLIPS Technologies, a private company that will develop customized, highly repellent surfaces for a broad range of industries.
Slippery When Coated: Helping Medical Devices Prevent Blood Clots
News
NPR features a new slippery coating for medical devices, developed with the Wyss Institute, that repels blood and bacteria and prevents clotting. The coating is also reported in a Scientific American podcast.
Butterfly's colourful trick of the light recreated in the lab
News
Physics World published an article about Grant's P Luna paper.
Butterfly-inspired material could cut counterfeiting
News
The Australian Broadcasting Company has written an article about Grant's paper on the Pierella luna diffraction.
Super-Slick Material Stops Ice from Forming
News
An article in Technology Review features slippery anti-icing surfaces developed by the group.
MPS Distinguished Lecture by Prof. Joanna Aizenberg on Bioinspired Materials of the Future
News
Professor Aizenberg gave a National Science Foundation Distinguished Lecture in Washington on bioinspired materials of the future. Watch the lecture here.
Materials inspired by nature
News
Physics World publishes two short films on the Aizenberg group's nature-inspired materials, featuring SLIPS and W-ink.
Crystal Nano Flowers And The Future Of Architectural Chemistry
News
The creators project posted a blog entry with a video about Wim's micro-flowers. Check it out here.
For the love of extreme materials: Joanna Aizenberg
News
Professor Aizenberg, newly elected to the Advisory Board of Advanced Materials, discusses her scientific path in Materials Views.
Bibliographic References tagged with 2014
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Aizenberg J. Slippery Liquid-Infused Porous Surfaces. The Journal of Ocean Technology. 2014;9(4):113–114.
Aizenberg J. Slippery Liquid-Infused Porous Surfaces. The Journal of Ocean Technology. 2014;9(4):113–114.
Vasquez Y, Kolle M, Mishchenko L, Hatton B, Aizenberg J. Three-Phase Co-Assembly: In-situ Incorporation of Nanoparticles into Tunable, Highly-Ordered, Porous Silica FIlms. ACS Photonics. 2014;1(1):53–60. doi:10.1021/ph400067z
Vasquez Y, Kolle M, Mishchenko L, Hatton B, Aizenberg J. Three-Phase Co-Assembly: In-situ Incorporation of Nanoparticles into Tunable, Highly-Ordered, Porous Silica FIlms. ACS Photonics. 2014;1(1):53–60. doi:10.1021/ph400067z
Singleton T, Burgess I, Nerger B, Goulet-Hanssens A, Koay N, Barrett C, Aizenberg J. Photo-tuning of Highly Selective Wetting in Inverse Opals. Soft Matter. 2014;10(9):1325–1328. doi:10.1039/C3SM52684D
Singleton T, Burgess I, Nerger B, Goulet-Hanssens A, Koay N, Barrett C, Aizenberg J. Photo-tuning of Highly Selective Wetting in Inverse Opals. Soft Matter. 2014;10(9):1325–1328. doi:10.1039/C3SM52684D
Zarzar LD, Aizenberg J. Stimuli-Responsive Chemomechanical Actuation: A Hybrid Materials Approach. Acc. Chem. Res. 2014;47(2):530–539. doi:10.1021/ar4001923
Zarzar LD, Aizenberg J. Stimuli-Responsive Chemomechanical Actuation: A Hybrid Materials Approach. Acc. Chem. Res. 2014;47(2):530–539. doi:10.1021/ar4001923
Shillingford C, MacCallum N, Wong T, Kim P, Aizenberg J. Fabrics coated with lubricated nanostructures display robust omniphobicity. Nanotechnology. 2014;25(1):014019. doi:10.1088/0957-4484/25/1/014019
Shillingford C, MacCallum N, Wong T, Kim P, Aizenberg J. Fabrics coated with lubricated nanostructures display robust omniphobicity. Nanotechnology. 2014;25(1):014019. doi:10.1088/0957-4484/25/1/014019
Phillips K, Vogel N, Hu Y, Kolle M, Perry C, Aizenberg J. Tunable Anisotropy in Inverse Opals and Emerging Optical Properties. Chem. Mater. 2014;26(4):1622–1628. doi:10.1021/cm403812y
Phillips K, Vogel N, Hu Y, Kolle M, Perry C, Aizenberg J. Tunable Anisotropy in Inverse Opals and Emerging Optical Properties. Chem. Mater. 2014;26(4):1622–1628. doi:10.1021/cm403812y
Hashmi B, Zarzar LD, Mammoto T, Jiang A, Aizenberg J, Ingber D. Developmentally-Inspired Shrink-Wrap Polymers for Mechanical Induction of Tissue Differentiation. Adv. Mater. 2014;26(20):3253–3257. doi:10.1002/adma.201304995
Hashmi B, Zarzar LD, Mammoto T, Jiang A, Aizenberg J, Ingber D. Developmentally-Inspired Shrink-Wrap Polymers for Mechanical Induction of Tissue Differentiation. Adv. Mater. 2014;26(20):3253–3257. doi:10.1002/adma.201304995
Balazs A, Aizenberg J. Reconfigurable soft matter. Soft Matter. 2014;10(9):1244–1245. doi:10.1039/C4SM90006E
Balazs A, Aizenberg J. Reconfigurable soft matter. Soft Matter. 2014;10(9):1244–1245. doi:10.1039/C4SM90006E
Yao X, Dunn S, Kim P, Duffy M, Alvarenga J, Aizenberg J. Fluorogel Elastomers with Tunable Transparency, Elasticity, Shape- Memory, and Antifouling Properties. Angew. Chem. Int. Ed. 2014;53(17):4418–4422. doi:10.1002/anie.201310385
Yao X, Dunn S, Kim P, Duffy M, Alvarenga J, Aizenberg J. Fluorogel Elastomers with Tunable Transparency, Elasticity, Shape- Memory, and Antifouling Properties. Angew. Chem. Int. Ed. 2014;53(17):4418–4422. doi:10.1002/anie.201310385
Howell C, Vu T, Lin J, Kolle S, Juthani N, Watson E, Weaver JC, Alvarenga J, Aizenberg J. Self-Replenishing Vascularized Fouling-Release Surfaces. ACS Appl. Mater. Interfaces. 2014;6(15):13299–13307. doi:10.1021/am503150y
Howell C, Vu T, Lin J, Kolle S, Juthani N, Watson E, Weaver JC, Alvarenga J, Aizenberg J. Self-Replenishing Vascularized Fouling-Release Surfaces. ACS Appl. Mater. Interfaces. 2014;6(15):13299–13307. doi:10.1021/am503150y