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Various characterizations, including in situ DRIFTS study, were performed to understand the reason for the enhanced performance of PtNi(OH x/γ-Al2O3.
Reasons for the enhanced performance are hypothesized.
The possible mechanism for the enhanced performance is also explored.
Mechanisms for the enhanced performance will be outlined through use of rheological techniques.
The highly porous structure with nanosheet networks composed of nanoparticles is responsible for the enhanced performance.
To achieve integrated operation of the machine, automation is essential for the enhanced performance and operational efficiency.
Similar(36)
Electrodes with novel hierarchical nanoarchitectures can offer many opportunities for achieving the enhanced performance in energy storage.
Based on the experimental results obtained from amimRG, CdTe@MP-amimRG, CdTe@[bmim]MP-amimRG, and CdTe@[emim]MP-amimRG nanocomposites, it is proposed that the synergistic effects between imidazolium rings and graphene are responsible for the enhanced performances.
The enhanced performance for the composites (Cu 15 wt.
The enhanced performance for tailored UV LED is explained by the simulated energy band diagrams, distribution of carrier concentration and radiative recombination rate in the quantum wells.
The enhanced performance for polarization-doped UV LED is explained by the simulated energy band diagrams, distribution of carrier concentration and radiative recombination rate in the quantum wells.
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