Results 181 to 190 of about 12,252,313 (302)

Bone‐Inspired Recyclable Composites for Damage‐Tolerant Circular Materials

open access: yesAdvanced Functional Materials, EarlyView.
Bone‐inspired architected composites are developed by combining osteon‐like reinforcements with a recyclable Elium thermoplastic matrix. The hierarchical architecture redirects cracks and promotes energy dissipation, while enabling recovery of intact, aligned, load‐bearing reinforcement units that retain their original stiffness, revealing a route ...
Alessandro Stagni   +4 more
wiley   +1 more source

Vanderbilt University Law School Journal of Entertainment and Technology 2009 Fall Symposium Panel - Panel 3

open access: yes, 2009
Includes descriptive metadata provided by producer in QuickTime movie file: "Law School - 2009 Fall JETLaw Symposium - Vanderbilt University Law School Journal of Entertainment 2009 Symposium Panel - Panel 3 - Vanderbilt University."Law ...
Vanderbilt University. Law School
core  

Multistage, Self‐Sensing Artificial Muscles With Coordination From Liquid Crystal Elastomer‐Graphene Composite Fibers

open access: yesAdvanced Functional Materials, EarlyView.
Inspired by skeletal muscles’ precision and endurance, CoilLCE integrates a self‐sensing liquid crystal elastomer/graphene artificial muscle with an embedded Joule‐heating copper coil, enabling closed‐loop multistage actuation with programmable intermediate states (strain accuracy of 2%), and antagonistic coordination (32% total strain). These features
Ziyun Zhang   +9 more
wiley   +1 more source

Vanderbilt University Law School Journal of Entertainment and Technology 2009 Fall Symposium Panel - Opening & Panel 1

open access: yes, 2009
Includes descriptive metadata provided by producer in QuickTime movie file: "Law School - 2009 Fall JETLaw Symposium - Vanderbilt University Law School Journal of Entertainment 2009 Symposium Panel - Opening & Panel 1 - Vanderbilt University."Law ...
Vanderbilt University. Law School
core  

CO2‐to‐CO Conversion in a Gas‐Fed, Zero‐Gap, PEM Electrolyzer Enabled by Polycations and Nitrogen‐Doped Carbon‐Supported Cobalt Nanoparticles

open access: yesAdvanced Functional Materials, EarlyView.
A gas‐fed, zero‐gap, PEM CO2 electrolyzer is realized by incorporating PDDA+ ions onto the carbonaceous Co/N‐C electrocatalyst, with gaseous H2 and CO2 fed into the anode and cathode, respectively. Operating without an aqueous electrolyte, the system sustains a peak FECO of 65.1% at 100 mA cm−2. ABSTRACT Electrochemical carbon dioxide reduction (ECO2R)
Yuen Leong Chow   +6 more
wiley   +1 more source

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