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The hard template method has been successfully developed in the synthesis of OMCs.
Template method has been used as an important method to prepare porous materials.
The template method has proven to be an effective protocol for obtaining nitrogen-doped Co3O4/C composites.
The template method has been accomplished using a variety of templates, which are polycarbonate membranes, nanochannel alumina and anodized aluminum oxides (AAO).
The preparation of self-assembled ordered mesoporous carbons (SA-OMCs) using a soft template method has many advantages, such as low cost, ease of preparation and control.
Combination of the layer-by-layer (LbL) technique with the porous template method has attracted significant interest as a versatile approach that has been used to prepare tubular nanomaterials with tailored properties.
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However, the soft-template method has the advantage in preparing large quantities of PANI nanostructures by being simple and cost effective.
Due to its simplicity, the sucrose-template method has great potential for manufacturing high quality ultrafine ceramic oxides economically [22] and this creates a new approach for synthesis of the other ceramic materials.
A templating method has a great potential to produce various one-dimensional nanostructures with different favorable properties.
The templating method has always been considered an efficient method to design new morphologies for old materials.
A soft templating method has been developed for the synthesis of hollow polydopamine nanocapsules with adjustable shell thickness.
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