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This material displayed a narrow lamella thickness distribution, with lamellae averaging 25 26 Å in thickness.
For most loading cases under investigation, the material displayed a mixed cracking behavior.
This material displayed a notched Izod value of 1070 J/m while maintaining Tg near 100 °C.
The material displayed a gel-like behavior, it was easily injectable as demonstrated by suitable tests and did not induce cytotoxicity or inflammation.
The final material displayed a surface area of 711 m2 g−1 and a total pore volume of 0.93 cm3 g−1.
The material displayed a high density of relatively strong acid sites along with robustness in its dry state, up to 200 °C.
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Furthermore, a two-electrode symmetric supercapacitor based on the carbon material displayed an energy density of 13.3 Wh kg−1 at a high power density of 7125 Wkg 1.
In addition, the strong absorption and suitable energy levels of materials (M6, M7-Br and M7-TFSI) also qualify them as donor materials in organic solar cells (OSCs) and the devices containing M7-TFSI as donor material displayed an efficiency of 6.9%.
These phases are detected in the form of a gel that provides continuity throughout the material; as such, the material displays a "honeycomb" type of microstructure.
Dissociated embryonic rat cortices grown on flexible fibrin gels, a biomaterial with potential use as an implant material, display a similar mechano-dependent difference in cell population.
In addition, the electrode fabricated from this material displays a greater improvement in its electrochemical lithium-storage properties with an increase in current density an increase of 13.8% at 0.1 mA cm−2 and 40.1% at 2.0 mA cm−2 compared that observed for the undoped material.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com