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To optimize the electrochemical properties, SnCo@N-doped carbon nanocages with controllable carbon shell thickness can be tailored by coating polydopamine (PDA) with various thicknesses on CoSn(OH 6 hollow nanocubes in the second step of the synthesis process.
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The outcome of the present study shows that the degradation of iron can be tailored by tuning the properties of the PPy coating for possible medical applications.
The thickness of the TaCx layer could be tailored by the ion fluence and energy making possible to produce coating layer of desired thickness.
The crystallinity of the BN coating and the diameters of the ZrB2 particles could be tailored by changing the reaction conditions.
The wrapping area in each discrete wrapping step can thus be tailored by the spacing of the ligands (i.e., the ligand density) coated on the NP surface.
The fibre matrix interfaces were tailored by pre-coating the as-received KD-I SiC fibres with PyC layers of different thicknesses or a layer of SiC.
The coating characteristics are tailored by controlling the deposition parameters in a plasma reactive sputtering process.
The surface morphology, coating thickness and tribological properties were tailored by adjusting the PEO process parameters.
The results show that desired coating properties can be tailored successfully by varying the molar mass and particle design.
These will also be tailored to titles game-by-game.
Furthermore, the radiative flux distribution on the cylindrical surface can also be tailored to meet various design requirements by applying different coating designs on the cylindrical surface.
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