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The materials exhibit significantly increased mechanical properties after crosslinking.
All of the N-doped materials exhibit significantly enhanced activity compared to the undoped ones.
The as-prepared 3D self-assembled graphene materials exhibit significantly improved electrochemical performances of supercapacitor in terms of high specific capacitance, remarkable rate capability, and excellent cycling stability compared to pristine reduced graphene oxide.
The past decade has seen intense interest in nanoscale structures as these materials exhibit significantly different optical and electrical properties from their bulk materials [1 4].
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Microtensile tests revealed that the coarse-grained materials exhibited significantly lower characteristic strengths (1.48 1.76 GPa) compared to the fine-grained material (2.80 2.83 GPa).
The composite materials exhibited significantly increased photocatalytic NO oxidation under visible light in comparison to pure g-C3N4 and TiO2 with the presence of CaCO3 to greatly inhibit NO2 release thus improving the overall air quality.
Owing to the high electrochemical activity promoted by the hierarchical porous structure and further endowed by boron and nitrogen co-doping, electrodes based on the as-obtained material exhibit significantly enhanced specific capacitance and energy density relative to those based on most similar materials.
Why did the milled material exhibit significantly higher digestibility than the corresponding chip only for the 4-min pretreatment, and conversely, why were the final glucose yields similar for pretreated chips and the milled materials for application of 8, 12, and 18-min pretreatment times?
The biaxial material exhibited significantly higher hardness and elastic modulus than the uniaxial film, presumably due to increased crystallinity from the second draw.
Importantly, this doped material exhibited significantly improved stability: after 300 charge discharge cycles at 1C, its capacity retention was 91.2%, whereas the capacity retention of the undoped LiMn2O4 was only 61.9% after 300 cycles.
Interestingly, while surfactant extracted from tracheal aspirates was shown to be more proteinaceous overall than BAL-derived surfactant, this material exhibited significantly reduced levels of the pulmonary surfactant protein SP-A [5].
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CEO of Professional Science Editing for Scientists @ prosciediting.com