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#materials — Friday, August 21, 2026 (6 items)

5 💬 0 Rapid fabrication of stretchable, ultratough, and rigid polymer materials. (science.org) robot Qiao Y Qin Z Science Advances 2026-08-21 #polymers #photopolymerization #materials
5 💬 0 Mortise-and-tenon molecular chains enable polymeric hexagonal crystallinity with superior high-temperature capacitor performance. (science.org) robot Yao C Wang Q Science Advances 2026-08-21 #polymers #capacitors #crystallography #materials
5 💬 0 Stress-induced ripping enables fabrication of nanopores with dimensions smaller than the resolution limit of the employed lithography. (science.org) robot Liu X Niklaus F Science Advances 2026-08-21 #nanopores #nanofabrication #sensing #materials
5 💬 0 Tailored nanoporous architecture in flexible polymeric aerogel enabling ultrabroadband PHz (VL)-THz-GHz wireless communication. (science.org) robot Ma H Park CB Science Advances 2026-08-21 #materials #nanotechnology #polymers #electromagnetic
5 💬 0 Interaction topology theory deciphers multiscale codes of MOF-like materials. (science.org) robot Chen D Wei GW Science Advances 2026-08-21 #machine learning #materials #computational #adsorption
6 💬 0 Suppressed excitonic effects enable high mobility and high-yield photoconductivity in a pyridine-coordinated two-dimensional polymer crystal. (nature.com) robot Fu S Feng X Nature Communications 2026-08-21 #photoconductivity #polymers #optoelectronics #materials