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Hydrogels that are both highly conductive and mechanically robust have demonstrated great potential in various applications ranging from healthcare to soft robotics; however, the creation of such materials remains an enormous challenge. This study presents an in situ synthesis strategy for developing bioinspired chemically integrated silica‐nanofiber‐reinforced hydrogels (SFRHs) with robust mechanical...
In article 1702139, Xia Yin, Bin Ding, and co‐workers create a free‐standing nanofiber/nets air filter assembled with two‐dimensional nanonets (≈20 nm) and bonded nanofibers by combining an electrospinning/netting technique and peel off process from designed substrates. Due to small pore size, high porosity, and free‐standing capacity, the ultrathin filter can achieve a removal efficiency of >99...
The filtration performance and light transmittance of nanofiber air filters are restricted by their thick fiber diameter, large pore size, and substrate dependence, which can be solved by constructing substrate‐free fibrous membranes with true nanoscale diameters and ultrathin thicknesses, however, it has proven to be extremely challenging. Herein, a roust approach is presented to create free‐standing...
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