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A three-dimensional (3D) structure carbon foam for microwave absorption is synthesized by a facile template method using coal liquefaction residue (CLR) as carbon source.
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Macroporous spinel-structured LiMn2O4 microparticles have been successfully prepared by a facile template-free synthesis process.
Ni foam supported-NiCo2O4 nanostructures with various morphologies are successfully prepared by a facile template-free method.
Hollow CuFe2O4/α-Fe2O3 CuFe2O4/α-Fe2O3 ultrathin porous shell were sucomposites prepared by a facile template-induced method, withh involves the self-assembly of Fe3+ ions on the sultrathin Cu@carbon microsporous and the shellquent transformation to CuFe2O4/α-Fe2O3 through thermal oxidation and solid phase reaction.
In this work, mesoporous NiO with three-dimensional flowerlike morphology were synthesized from precursor α-Ni(OH 2 by a facile template-free modified homogeneous precipitation method, where CO NH2 2 could be acted as a chelating agent at lower temperatures, and source material of OH− utilizing the hydrolysis reaction at high temperatures.
In this work, a binder-free array-type electrode, constructed of nickel sulfide (Ni3S2) nanoparticles encapsulated in amorphous carbon sheath (ACS), was fabricated by a facile templating method.
Pine needle-like Pd micro/nano-leaves have been synthesized by a facile, template-free electrochemical method.
The Sn/Ni nanotube arrays grow directly on Cu foil by electrodeposition and a facile template based solution route, and further modify the surface by uniform PEO coating on the outer surface of the Sn/Ni nanotubes.
However, it is well known that in diatoms where similar amorphous hybrid bioinorganic structures are produced, cationic polypeptides play a major role by way of providing a facile template as well as playing the biocatalyst role for silicic acid hydrolysis [10] [12].
Herein, we report the synthesis of novel mesoporous silicon particles with a facile template method by using a magnesiothermic reduction for LIBs.
In this work, spinel ZnFe2O4 compounds with different 3-D sphere-like morphologies, namely faceted microspheres and solid microspheres, were successfully synthesized by employing a facile template-free solvothermal process coupled with a post annealing treatment.
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