2019
DOI: 10.3390/nano9040503
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Agar Hydrogel Template Synthesis of Mn3O4 Nanoparticles through an Ion Diffusion Method Controlled by Ion Exchange Membrane and Electrochemical Performance

Abstract: A novel strategy, ion diffusion method controlled by ion exchange membrane combining with agar hydrogel template, was reported for the synthesis of Mn3O4 nanoparticles without any oxidizing agents. X-ray diffraction (XRD), scanning electron microscopy (SEM), transmission electron microscopy (TEM), X-ray photoelectron spectroscopy (XPS) and Brunauere-Emmette-Teller (BET) isotherm were carried out to characterize the structure, morphology, pore size and distribution and specific surface area of the as-prepared n… Show more

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Cited by 23 publications
(6 citation statements)
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“…Besides the fact that the average oxidation state of manganese decreased in the case of the M450 and M600 samples compared to the M200 sample, the structure of the M450 sample consisted of a mixture of sheets and flakes and M600 consisted mostly of 10-50 nm small nanoflakes. 72…”
Section: Morphological Characterizationmentioning
confidence: 99%
“…Besides the fact that the average oxidation state of manganese decreased in the case of the M450 and M600 samples compared to the M200 sample, the structure of the M450 sample consisted of a mixture of sheets and flakes and M600 consisted mostly of 10-50 nm small nanoflakes. 72…”
Section: Morphological Characterizationmentioning
confidence: 99%
“…For pseudocapacitors, in which materials such as metal oxides and conducting polymers are used as electrode materials, capacitance arises because of the fast and reversible redox or Faradaic reactions that occurs at electroactive sites at the surface of the electrodes. Pseudocapacitors have the advantages of higher energy density and enhanced specific capacitance [6,7]. Surface area of electrode materials greatly affect performance of both EDLCs and pseudocapacitors.…”
Section: Introductionmentioning
confidence: 99%
“…At present, template-assisted synthesis methods have attracted a great deal of interest besides emerging as excellent methods compared to template-free processes in nanomaterials preparation due to their iteration speed, high density, controlling the structure, and morphology, besides the size of the generated material. Based on the structure, models are divided into two types, named soft models and hard models [ 51 , 52 ]. From the findings in the literature, due to the hardness and unique structure, the use of rigid mould materials such as microporous zeolites, neutral materials, anodic aluminum oxide films, colloidal silicon spheres, etc.…”
Section: Metal Oxide Nanoparticlesmentioning
confidence: 99%