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The specific surface area, morphology and electrochemical performance of thin films of electrodeposited manganese dioxide have been examined.
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The performance of thin film solar cells can be significantly enhanced by efficient light management.
The performance of Thin Film Transistors (TFTs) with chemically deposited Zn-doped CdS active layers was assessed.
This paper reports a study about how to enhance the performance of thin film Si solar cells.
It is well-known that the performance of thin film organic electronic devices critically depends on the active layer microstructure.
The influence of the density of states (DOS) and intrinsic layer (I-layer) thickness on the performance of thin film solar cells is investigated.
The aims of this study were to evaluate and determine ways to improve the performance of thin film (FlexiForce) sensors at the body/device interface.
Here, a systematic investigation on the influence of support layer pore size on the osmotic performance of thin film composite membranes is conducted for the first time.
To further improve the performance of thin film SiNW/PEDOT PSS solar cells, in this work, we fabricate such cells using a thicker Si thin film of 10.6 μm.
Zeng et al. have demonstrated a combined effect of one-dimensional photonic crystal as a distributed Bragg reflector and diffraction grating on the performance of thin film solar cells.
Computing the electromagnetic field due to a periodic grating is critical for assessing the performance of thin film solar voltaic devices.
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