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Traditional polymer membranes suffer from low flux and oil fouling when utilized for separating oil/water emulsion.
When utilized for sodium-ion batteries, it presents the high charge capacities of 305 mAh g−1 at 1C and 143 mAh g−1 at 10C.
Specially, we point out the major challenges of the CRISPR tools when utilized for multiplex genome editing and sophisticated expression regulation.
When utilized for oil/water emulsion filtration, the total flux decline ratio of PVDF/PHFBM-PEGMA-PMTAC membrane was as low as 6.3% and the flux recovery ratio reached nearly 100%.
When utilized for model wastewater treatment, the membrane fouling is exquisitely suppressed: permeation flux-decline is decreased to an ultralow level (less than 1%) and permeation flux recovery after simple hydraulic washing is retained at nearly 100%.
The presentation of the results includes also the investigation of the limits of the proposed methods in view of indicating their reliable application range when utilized for torrefaction design procedures.
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The N and O co-functionalized GF when utilized both for the cathode and anode electrodes for a VRFB afforded 3−4% greater initial voltage and energy efficiencies along with 1.6 times higher initial charge discharge capacity than the conventional oxygen-doped GF electrode owing to the substantially lower reaction overpotential.
When utilized as anodes for lithium-ion batteries (LIBs), the as-synthesized ZnO/NC-Z NRDs deliver a high capacity of 1011 mA h g−1 at 200 mA g−1 after 200 cycles and remain 544 mA h g−1 at 1000 mA g−1 after 850 cycles, holding a capacity retention of as high as 87.7%.
When utilized as anode materials for sodium-ion batteries, the TiO2/C-HSs anode can deliver a high specific capacity and remarkable rate performance.
Our findings demonstrate the importance of improving the accuracy and precision of knee kinematic measurements, especially when utilized as an input for finite element models.
When utilized as anode material for sodium-ion batteries, the CPC presents a high overall sodium storage capacity ∼240 mAh g−1 at a current density of 100 mA g−1 after 100 cycles, and maintains a high specific capacity of 100 mAh g−1 after 5000 cycles at a current density of 3200 mA g−1.
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