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The formation mechanisms of different carbon morphologies are discussed.
Rheological differences between the morphologies are discussed in terms of the competition between crystal rearrangement and crystal deformation.
A number of promising 3D graphene-based hybrid anodes ranging from sheet-like, core-shaped, to foam-like morphologies are discussed.
The parametric controls required for preparing PS/GO containers with narrow size distribution (PDI = 0.23), smaller size and various morphologies are discussed, with a probable mechanism.
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And the formation mechanism of these morphologies was discussed.
The PCE of the resulting device based on the different perovskite morphologies was discussed.
Moreover, the process of cratering is analyzed in detail, and the variety of the crater morphologies is discussed.
The question why the thermal dissociation of some precursors yield PSSHC, while other precursors yield other morphologies, is discussed.
Propene oxidation was carried out with an electrochemical reactor, MoO3/Au|YSZ|Ag (YSZ: 8 mol.-% yttria-doped ZrO2), at 475°C under oxygen pumping, and the catalytic activity of the thin MoO3 film related to its crystal morphologies was discussed.
More elaborate models considering the nanohole morphology are discussed in [13, 24].
The effects of each of the experimental parameters on the morphology are discussed in detail in the following.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com