Sentence examples for template methods to from inspiring English sources

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Nevertheless, almost all reported works so far are limited only to unitary or binary template methods to achieve hollow multi-component materials.

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We present a self-reacting template method to synthesize 1D Co2.18Ni0.82Si2O5(OH)4 architectures using Ni SO4 0.3(OH)1.4 nanobelts.

We utilized the sphere template method to fabricate the 3D porous carbon scaffolds with excellent pore arrangements and enlarged interconnected areas among the pores.

Here we utilized a simply thermal condensation-assisted colloidal crystal template method to construct the novel and highly efficient three dimensionally ordered macroporous (3DOM) g-C3N4 photocatalyst for the photocatalytic oxidation of pollutants.

Here we report optimized mesopores enabling significantly enhanced rate performance in hierarchically meso-/microporous carbon with a ultrahigh surface area for supercapacitors, which is prepared by a new in-situ template method to exhibit a high mesopore volume proportion (66.0%), as well as a large pore volume up to 2.47 cm3 g−1, and an ultrahigh specific surface area of 3122 m2 g−1.

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.

Recently, we developed an in situ nanorod template method to synthesize high-quality single crystalline II V nanotubes, including Zn3P2 nanotubes and Cd3P2 nanotubes [52].

We have developed (1) a template method to obtain mesoporous (2 to 30 nm) metal silicates, in which a part of silicium ions were substituted isomorphically by metal ions in the SiO2 lattice and (2) a modified sol-gel synthesis of nanosized (≥ 4 nm) powdery oxides of group II-VIII metals with a BET surface area ranging from a few to 150 m2/g.

PiB-PET data were assessed using an automated ROI template method to sample different brain areas.

This paper describes a modified colloidal crystal templating method to prepare three-dimensionally ordered macroporous (3DOM) β-Bi2O3.

This paper describes a modified colloidal crystal templating method to prepare three-dimensionally ordered macroporous (3DOM) SnO2 as anode materials for lithium ion batteries.

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