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In recent times, one-dimensional (1D) nanomaterials have demonstrated distinctive advantage for the energy conversion applications.
However, its untreated form is not ideally suited for energy conversion applications.
Thus, it is commonly considered that h-BN is inappropriate for photocatalysis and photovoltaic conversion applications.
Power electronics will play a key role in future fuel cell energy conversion applications.
Therefore, we suggest α-GNT as a potential candidate for phonovoltaic energy conversion applications.
Therefore, conjugated polymers with large band gap inorganic semiconductors obtain awareness for optical, electronic, photocatalytic and photoelectric conversion applications.
Moreover, we have introduced for a first time a new figure of merit for qualifying photo-thermal conversion applications.
It can be used to develop effective electrode materials for large-scale energy storage and conversion applications.
Similar(3)
The present work not only provides new perspective into manipulating component-adjustable heterojunctional photocatalysts, but also opens an alternative avenue for developing composite materials for solar-conversion applications.
The thickness of MoS2 flakes was manipulated at the few-layer level (5 10), which is desirable for energy-storage and energy-conversion applications.
This novel stand-up structure of GNW CNT/CF with a high surface area and low electron-transfer resistance has great potential for developing a revolutionary new class of nanostructured electrodes in supercapacitors or other energy-conversion applications.
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