Search Results - "Ghezawi, Natasha"
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Autonomous Self‐Healing Elastomers with Unprecedented Adhesion Force
Published in Advanced functional materials (01-01-2021)“…Self‐healable elastomers are extremely attractive due to their ability to prolong product lifetime. An additional function that could further expand their…”
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Self‐Healing Elastomers: Autonomous Self‐Healing Elastomers with Unprecedented Adhesion Force (Adv. Funct. Mater. 4/2021)
Published in Advanced functional materials (01-01-2021)“…In article number 2006298, Tomonori Saito, Diana Hun, Peng‐Fei Cao, and co‐workers develop a series of autonomous self‐healable elastomers with excellent…”
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Modeling the Extraction Rate Coefficient for the Extraction of Yttrium by DEHPA Using Organic-Phase Recycle
Published in Solvent extraction and ion exchange (19-09-2019)“…Extraction of yttrium (Y) from sulfuric acid was studied using di(2-ethylhexyl) phosphate (DEHPA). A portion of the organic phase was recycled back into the…”
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Autonomous Self-Healing Elastomers with Unprecedented Adhesion Force
Published in Advanced functional materials (14-10-2020)“…Self-healable elastomers are extremely attractive due to their ability to prolong product lifetime. An additional function that could further expand their…”
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Demonstration of self-healing barrier films for vacuum insulation panels
Published in Vacuum (01-06-2019)“…This article presents the demonstration of a rapid self-healing system for barrier films of vacuum insulation panels (VIPs). The proposed self-healing films…”
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Unraveling a path for multi-cycle recycling of tailored fiber-reinforced vitrimer composites
Published in Cell reports physical science (21-09-2022)“…Manufacturing transformation toward a net-zero carbon society demands polymeric composite materials to be reprocessable in circularity in an energy-efficient…”
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Unraveling a path for multi-cycle recycling of tailored fiber-reinforced vitrimer composites
Published in Cell reports physical science (01-09-2022)“…Manufacturing transformation toward a net-zero carbon society demands polymeric composite materials to be reprocessable in circularity in an energy-efficient…”
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Tough and recyclable carbon-fiber composites with exceptional interfacial adhesion via a tailored vitrimer-fiber interface
Published in Cell reports physical science (20-12-2023)“…Carbon-fiber-reinforced polymers (CFRPs) offer improved energy efficiency in aerospace and automobile applications due to lightweight and mechanical robustness…”
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