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The capacitive behavior of the MnO2thin films with different morphologies are studied by cyclic voltammetry.
The effects of the synthesis temperature on the morphology of the films are investigated, and the capacitive behaviors of nanostructured MnO2thin films with different morphologies are studied and compared.
As an application, low-energy morphologies are studied for the austenite martensite interface in the cubic-to-orthorhombic transformation in a CuAlNi shape memory alloy.
Thin film morphologies are studied by atomic force microscopy (AFM) and the blends are applied in organic solar cell (OSC) devices.
Their structures with morphologies are studied and the electrochemical properties are investigated as cathode materials for rechargeable lithium-ion batteries (LIBs).
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Their morphologies were studied by TEM.
The Morphologies were studied by SEM and TEM analysis.
The microstructure, fracture and delaminated surface morphologies were studied.
Six samples with different morphologies were studied (shown in supporting information 5 in Additional file1).
Their photophysical properties, electrochemical properties and thin film morphologies were studied.
Sample morphologies were studied by using an atomic force microscope (AFM) (MFP3D, Asylum Research, Santa Barbara, CA, USA) in the tapping mode.
More suggestions(15)
morphologies are found
patterns are studied
morphologies are dictated
morphologies are fabricated
morphologies are checked
morphologies are obtained
morphologies are reported
morphologies are shown
morphologies are mediated
morphologies are decorated
morphologies are observed
morphologies are concerned
morphologies are formed
morphologies are synthesized
morphologies are associated
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