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The resulting various macroporous morphologies can be obtained.
The cell morphologies can be controlled by carefully designing the pattern shapes and sizes.
The micellar morphologies can be precisely controlled by temperature change between 15 and 37 °C.
This way a multitude of different surface roughness morphologies can be realized.
The control of the generated morphologies can be performed only by varying the processing temperature.
These morphologies can be assigned to spherulites having much different ion concentrations.
These different morphologies can be attributed to different mechanisms of layer growth.
Our study shows that elemental metals and their morphologies can be achieved by controlling the reaction conditions.
Due to the variety of factors influencing the electrospinning process, a wide range of fiber morphologies can be created.
By controlling the composition and architecture of individual block components, a variety of nanoscale morphologies can be obtained.
When the surfactant rearrangement at the interface is long (>30 min), a coexistence of morphologies can be obtained.
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