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Furthermore, it suggests too long growth time may not be suitable for the application requiring adequate surface openings.
Therefore, excessive long growth time is disadvantageous and leads to a reduced photovoltaic performance of the solar cells.
However, the CSD process takes a long growth time, and it is not easy to control the growth process.
Therefore, an excessively long growth time is disadvantageous and leads to a reduced photovoltaic performance of the UV photodetector.
Additionally, identification and susceptibility testing of the isolates are major advantages of the cultural methods except that they take relatively long growth time.
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Fig. 4 EPR spectra of Mn-doped ZnSxSe1−x NCs with short (15 min) and long (60 min) growth times before (the dashed lines indicate peak-to-peak position of the broad isotropic resonance) and after surface exchange/passivation. Inset magnifies the maximum intensity region for the short and long growth times with the short growth time spectrum showing noticeable hyperfine splitting.
The slow growth rates and low cell mass production associated with starved cultures result in long growth times and low yields, thus making it impractical for commercial production of enzymes.
In particular, our cell fabrication process is compatible with InP thin films grown directly on cheap metal foils using our recently developed thin film vapor liquid solid growth technique, which circumvents the main cost drivers for III V photovoltaics: the epitaxial wafer substrate, low precursor utilization yield, and long growth times associated with MOCVD.
As evident from the EQE spectrum in Fig. 6a, longer and denser ZnO nanorods, with the longest growth time, improve the response of the solar cell at longer wavelength, where the gain from orthogonal cells is greatest.
The lattice spacing for the 2 nm thick CdS shell after the longest growth time is even 0.9% smaller.
For the longest growth times, the initial GaAs 2H NWs have merged to form a nearly continuous film.
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