Direct Ink Writing Additive Manufacturing of Polyimide Aerogels. [PDF]
Chen B, Jiang Q, Jiang J.
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Application Research of Microstructured Flexible Sensors in Rehabilitative Wearable Sensing
ABSTRACT Flexible sensors enable the continuous, real‐time monitoring of the physiological and movement signals of patients, providing data support for precise rehabilitation strategies and playing a crucial role in rehabilitation medicine. However, traditional rigid sensors are often incompatible with dynamic body contours due to their high material ...
Ling Zhu +4 more
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Molecularly Engineered Aza-Crown Ether Functionalized Sodium Alginate Aerogels for Highly Selective and Sustainable Cu<sup>2+</sup> Removal. [PDF]
Long T +7 more
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Mild Synthesis of Ag-Decorated TiO<sub>2</sub> Aerogels for Light-Driven CO<sub>2</sub> Reduction. [PDF]
Kiwic D +3 more
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Nanoporous ZnO/SiO<sub>2</sub> aerogel and xerogel composites <i>via</i> a one-pot sol-gel process at room temperature. [PDF]
El-Cheikh AF +4 more
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Air-dried high-strength black MXene aerogel for spatiotemporal infrared information management. [PDF]
Wu C +7 more
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Tuning the Adsorption of H and OH on Ruthenium Aerogel to Boost the Alkaline Hydrogen Evolution. [PDF]
Liu Y +7 more
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Deciphering CO<sub>2</sub> Adsorption Mechanisms at the Atomic Scale in Cellulose and Chitosan Aerogels. [PDF]
Pereira D +5 more
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Aerogels are often largely mesoporous solids, with a porosity which may exceed 90 vol% and a specific surface area up to 1000 m2 g-1. Such materials were first obtained by Kistler in 1932, and designate gels in which the liquid was replaced with a gas without collapsing the gel solid network. Contrary to xerogels dried from wet gels by evaporation with
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