Exact(1)
Sample C was a complete replica of sample A. Figure 1 Procedure schematics of (a) sample A, (b) sample B, (c) sample D, and (d) sample E. In order to demonstrate the effect of a low-temperature thin AlGaAs capping layer on suppressing the In desorption, group II including samples D, E, and F were grown.
Similar(59)
The model can be further combined to DCS graphics and field operated devices schematics to facilitate procedure testing.
Figure 1 a shows a schematics of the procedure used for fabricating the MEF substrates, which consist of patterned Au nanocages, covered by an e-beam deposited SiO2 spacing layer, and by a dye-doped light-emitting polymer film or nanofiber.
Reproduced with the permission from Ref. [84, 98, 122, 151, 169, 211] Open image in new window Fig. 4 Schematics of synthesis procedures of a chemical intercalation, b sonication assisted, c microwave assisted d template assisted for producing 2D TMO&C-based photocatalysts and the corresponding transmission electron microscopic images.
Scheme 1 Schematics depicting the fabrication procedure of MoS2/C nanocomposite. Figure 2a b show the XRD patterns and Raman spectra of the MoS2/C nanocomposites calcinated at different temperatures.
(A ) Schematics of RNA labeling procedure.
Figure 1 Schematics of the experimental procedures of patterned ZnO nanorod arrays.
Open image in new window Fig. 5 Schematics of hydrothermal synthesis procedures of a individual 2D nanostructures and b 3D hierarchically assembled structures and their corresponding transmission electron microscopic images.
The bottom image is placed on the unfolding device Fig. 2 Schematics of ICP preconcentration and procedure.
Fig. 1 Schematics of the process for fabricating SiO2 nanostructures.
Figure 1 Schematics of the nTP process.
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