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The performance of this compound optic often dictates the performance of the entire experimental system.
Using nanometric LaFeO3 powders has resulted in an improvement of the electrochemical performance of this compound [64].
It can also be expected that, the thermal performance of this compound structure can be even improved after a denser arrangement of dimple/protrusion structure and optimal shape design.
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Possible limiting factors for the performances of this compound in composite coatings are also discussed.
The catalytic performance of the compound can be tuned by changing the reduction temperature under hydrogen (300 °C, 500 °C and 700 °C).
The contribution of five important design parameters to the thermal hydraulic performance of the compound heat exchanger was numerically investigated.
FCC gasoline from Changqing Petrochemical, CNPC was used as feedstock to test the desulfurization and aromatization performance of the compound system.
The results indicate that the graphene layers act as a significant role in the cycling performance of the compound electrode, which due to stabilizes the structure of the electrode and increases the electric conductivity.
The catalytic performance of these compounds in n-butane oxidation under almost-equilibrated conditions was compared.
The inhibitive performance of the compounds is discussed in the light of electronic effects in the thioureas.
The electrocatalytic performance of the compounds on nitrite reduction was assessed in solution and in the immobilized state.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com