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The phase change enthalpy of the SA/a-CNTs composite could also be tailored by changing the mass ratio of SA and a-CNTs.
Hydrophobocity of ZnO thin films can be well tailored by changing the doping concentration of Al.
The electrical properties of the polymer were tailored by changing the concentration of MWCNTs.
In addition, its specific capacitance can be facilely tailored by changing the assembly cycle number.
The hydrophilicity of the materials could be tailored by changing the CL content.
The morphology can be tailored by changing the precursor concentration and reaction time.
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The length of a nanotube can be easily tailored by simply changing the synthesis time.
The morphology of the prepared Sc3N@C80 structures could be tailored by merely changing the solvent used for the interfacial precipitation.
Moreover, the size of self-assembled micelles could be easily tailored by only changing the grafting ratio of MPEG chains.
Our results showed the possibility of tailoring these properties by changing component ratios, since different interactions occurred between Chit/Col: samples with Chit-enriched compositions showed a hydrogen-bonding type complex (HC), whereas a self-crosslinking phenomenon was induced in Col-enriched scaffolds.
It allows a higher degree of freedom as regards the choice of the band gap, as the latter one can be tailored over some range by changing the Si/Ge ratio [2, 4].
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