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We developed a sacrificial template strategy to synthesize short NiO nanotubes (S-NiO NTs) with mesopores in sidewalls by using short carbon NTs as template for electrochemical capacitors.
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We design a novel solvent- and self-template strategy to fabricate carbon materials with ultramicro-, supermicro- and mesopores through a simple solvothermal reaction of phloroglucinol and terephthaldehyde in dioxane using acetic acid as the catalyst, followed by carbonization.
Although there is some literature on the use of carbon nanotubes (CNT) as scaffolds for the preparation of silica nanotubes with different morphologies [14 16], carbon materials with a peculiar structure such as CMC has not been used in a combined hard and soft templating strategy to produce hierarchically ordered materials.
In the last decade, several "active metal-template" strategies to interlocked molecules have been developed.[ 57] In active template synthesis the metal ion plays a dual role, acting as a template to entwine or thread the building blocks while also actively catalyzing the bond-forming reaction that covalently traps the interlocked structure.
Here, we report an intriguing template casting strategy to introduce a mass of atomically dispersed FeN2 moieties onto the surface of N-doped ordered mesoporous carbon for boosting ORR electrocatalysis.
There is no one research "template" or strategy to apply across all Native peoples.
In this work, a metal-organic framework (MOF -engaged template strategy is developed to mediate the in-situ formation of ultrafine ZnS nanorods rooted in the hollow carbon polyhedra (denoted as ZnS NR@HCP).
Herein, we report a template-engaged strategy to fabricate urchin-like ternary metal phosphide (Ni0.5Co0.5P-300) as catalyst for hydrogen evolution reaction.
In this article, a simple "liquid phase impregnation template" strategy has been developed to synthesize hierarchically porous V2O5/C (HPVC) nanocomposites by using commercial V2O5 and phenol-formaldehyde (PF) resol as precursors and polystyrene opal microspheres as template.
As an example, hard template strategy has been applied to produce hierarchical structured zeolite, such as macroporous MFI zeolite crystals by applying polystyrene beads [21] as the macropore template or nanosized ZSM-5 crystals by carrying out the crystallization in the confined space of amorphous carbon black [22].
Based on the study performed on conversion of clinical models between the openEHR archetype format and the COSMIC template format, a strategy to add archetype support in current generation EHR systems was formulated.
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