Exact(2)
Research on carbon nanotubes have shown the application in the field of energy storage, hydrogen storage, electrochemical supercapacitor, field-emitting devices, transistors, nanoprobes and sensors, composite material, templates, etc.
Carbon material templates used in the experiment are commonly used in industry, for instance, carbon black (Degussa Company, FW200, denoted as FW200), conductive carbon black (Carbot Company, XC72R, denoted as Carbot), carbon nanotubes (denoted as CNTS) and graphitic carbon (denoted as Graphite).
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Soft material templating is a promising approach for assembling and manipulating nanoparticles structures.
Recent progresses in materials templating techniques, including the advent of three-dimensional printing, have accelerated the development of macroscopic architectures with micro-level-controlled features by rational design, with potential for manufacturing.
After a brief presentation of these materials (template synthesis, characterization, properties and uses) and the ways to attach them to electrode surfaces (including their basic electrochemical behavior), we review their interest for electroanalytical purposes.
In contrast to the interpenetrating bulk heterojunction structure synthesized by blending the p- and n-type materials, template-assisted method of porous alumina could produce a versatile and unique heterostructured nanostructure such as composite nanorods and nanotubes by a simple layer-by-layer approach [4,13].
We acknowledge the use of the material and templates developed by the Ricardo Pietrobon and team "Research on Research (RoR), Duke University Health System, USA " for manuscript writing [43] and literature search [44] while compiling this manuscript.
The pre-publication history for this paper can be accessed here: http://www.biomedcentral.com/1472-6920/10/39/prepub We acknowledge the use of the material and templates developed by "Research on Research" team for manuscript writing [ 28] and literature search [ 76] while compiling this manuscript.
Nanotubes of inorganic materials like silica, which do not have sp2 bonding that favors tube formation, were generally prepared using porous materials [9, 10] or wire-shaped materials as templates [11].
The account relative to soft template is hard template strategy, which uses a structural rigid organic or inorganic material as template.
Training materials were developed, including information and resource packs, course materials and templates for development of a reflective learning portfolio.
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