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In this section, we summarized the understanding of perovskite materials and devices from the perspective of crystal structure, optoelectronic property, device working mechanism, as well as the progress of the solar cells.
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We have carefully examined their optical and electrochemical properties, device performance and electrochemical impedance spectroscopy (EIS).
This review describes the historical development, material properties, device structures, and highest performance of each technology under a single-junction configuration.
This apparatus consisted of a fluid property measurement device and a high-pressure falling-ball viscometer.
These unique properties have made GO LCs very different from conventional ones in terms of basic phase property and device applications.
To further gain the polarization-dependent property of the device, device photocurrent has been measured with different polarization incident light.
Their thermal, photophysical, electrochemical properties and device characteristics were investigated.
In this paragraph, we attempted to correlate fluid flow characteristic with surface properties and device structures.
Tantalum disulfide nanosheets have attracted great interest due to its electronic properties and device applications.
The results suggest that biaxially tensile-strained Ge nanowires hold promising properties in device applications.
Thus, a study on multiwire properties and device application is feasible.
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