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Ordered microporous carbons synthesized by the template method using zeolite Y were hot-pressed at 573 K up to 147 MPa, aiming at densification of the templated carbons for the future use as energy storage media.
This includes nanotube preparation by the template method, the polymer blend method coupled with spinning, heating a Si substrate under a steep temperature gradient in alcohol and the decomposition of a SiC single crystal wafer, and preparation of single-wall carbon nanohorns, cup-stacked-type nanofibers and exfoliated carbon fibers.
It has been shown that the nature of structure-directing components determines the morphology of the silicate obtained by the template method: dispersion and shape of its particles.
Song et al. prepared a cage-like carbon/nano-Si composite as anode materials by the template method to embed Si nanoparticles into ZIF-8.
The obtainment of mesoporous metal silicates by the template method was realized in an autoclave at 80°C to 150°C and at an autogenous pressure by stirring.
Families of mesoporous (2 to 300 nm) metal silicates and nano-oxides and subnanopowders (4 to 300 nm) were synthesized by the template method and modified sol-gel technique, respectively.
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The characterization results indicated that the textural and structural properties of the material synthesized by the short time method are comparable with the properties of the material prepared by the hard template method.
So far, no nanowire arrays with length above 9 μm on Si or glass substrate have been achieved by this template method.
Similar to that found in the preparation of metal sulfides-polymer composite microspheres by the mentioned template method, Ag-P(AM- co-MAA) composite microspheres prepared this way also occupy unusual surface morphologies characterized by zigzag-like wrinkles.
Epoxy foams were prepared by the sacrificial template method.
A family of mononuclear Ln III) complexes 1 6 based on a 21-membered [1 + 1] Schiff-base macrocyclic ligand H2L, originating from extended dialdehyde H2pdd and 1,2-bis 2-aminoethoxy)ethane precursors, have been obtained by the template synthesis method.
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