2019
DOI: 10.1007/s10971-019-05094-0
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Synthesis of raspberry-like SiO2/polyacrylate nanocomposite latexes via a one-step miniemulsion polymerization and its film properties

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Cited by 5 publications
(2 citation statements)
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“…However, polyacrylonitrile is characterized by its poor stabilization and high stabilization temperature and heat release that result from the strong interaction and closed packing between polyacrylonitrile molecules [12]. So, a more need to a composite structure is preferred especially polymer-based nanocomposite materials have attracted particular interest, due to the fact that nanocomposites combine the advantages of the different used materials building the composite [13]. The incorporation of a low molecular weight inorganic material as cupric oxide having a nontoxic and lowpriced p-type semiconductor with a narrow band gap (1.78 eV) that finds broad applications in a wide range of different technologies, such as catalysis, energy conversion, magnetic storage, energy storage, thermites, good electrochemical performance, capacitance, sensors, photocatalysts as well as superconductors is advantageous to increase the thermal stability and adsorptive properties of polyacrylonitrile [14][15][16][17][18].…”
Section: Introductionmentioning
confidence: 99%
“…However, polyacrylonitrile is characterized by its poor stabilization and high stabilization temperature and heat release that result from the strong interaction and closed packing between polyacrylonitrile molecules [12]. So, a more need to a composite structure is preferred especially polymer-based nanocomposite materials have attracted particular interest, due to the fact that nanocomposites combine the advantages of the different used materials building the composite [13]. The incorporation of a low molecular weight inorganic material as cupric oxide having a nontoxic and lowpriced p-type semiconductor with a narrow band gap (1.78 eV) that finds broad applications in a wide range of different technologies, such as catalysis, energy conversion, magnetic storage, energy storage, thermites, good electrochemical performance, capacitance, sensors, photocatalysts as well as superconductors is advantageous to increase the thermal stability and adsorptive properties of polyacrylonitrile [14][15][16][17][18].…”
Section: Introductionmentioning
confidence: 99%
“…The improvement of latex film performance is due to the addition of nano-TiO 2 [25]. We have done a lot of research on polyacrylate/silica [26][27][28][29]. The results show that the introduction of silica improves the mechanical properties, thermal properties and water vapor permeability of polyacrylate film.…”
Section: Introductionmentioning
confidence: 99%