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  1. 1801
  2. 1802
    “…In contrast to the case of using nickel nitrate, increasing the nickel acetate molar concentration maintains the flexible fibrous sheet morphology of the as-spun sample during the polycondensation and calcination of NiO. As a result, our flexible electrode of NiO nanofibers derived from nickel acetate (NiO-A) exhibits much better electrochemical performance values than that of nickel nitrate-derived NiO. …”
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  3. 1803
    “…Metal-mixed oxide phases were formed in impregnated catalysts through formation of defects in HfO(2) and ZrO(2) structure during calcination at 600 °C, which was evidenced by Raman spectroscopy. …”
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  4. 1804
    “…The composites were obtained by different synthesis methods, starting from a mixture of the silver acetate with HA-FCC (using adsorption or mixing in wet conditions methods) and then treating them by exposure to visible light or calcination to promote the silver reduction; a synthetic procedure based on ultrasound-assisted reduction with NaBH(4) or citrate was also carried out. …”
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  5. 1805
    “…X-ray diffraction analysis, simultaneous thermal analysis, and scanning electronic microscopy were used, which showed that in the lime–calcined opoka mixture the formation of crystalline calcium silicate hydrates takes place much faster than in the lime–granite sawing waste mixture. …”
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  6. 1806
    “…The contrast of the characterization of the fresh and used Pd/UiO-66 (R = 15 : 1) indicated that the deactivation of the catalyst was attributed to carbonaceous accumulation on the catalyst surface, which could be easily regenerated by calcination. This work supplied a new alternative for the design and utilization of industrial catalysts for MIBK and MIBC synthesis.…”
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  7. 1807
    “…In this work, the Li(1.2)Mn(0.54)Ni(0.13)Co(0.13)O(2) cathode materials with a one-dimensional rod-like morphology were synthesized via a facile co-precipitation route followed by a post-calcination treatment. By reasonably adding NH(3)·H(2)O in the co-precipitation reaction, the sizes of the metal oxalate precursors could be rationally varied. …”
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  8. 1808
    “…Silicon@P123-templated Ce-doped layered double hydroxide (SiO(2)@CeMgAl-LDH(P123)) composites were synthesized via a facile in situ co-precipitation method, and characterized by TEM, X-ray diffraction, FTIR, XPS, CO(2)-, etc. in detail. Meanwhile, the calcined powder (SiO(2)@CeMgAl-LDO(P123)) possessed an excellent core–shell structure and a high surface area inherited from the LDH structure, which led to an outstanding catalytic activity (99.7% conversion of propylene oxide, 92.4% selectivity of propylene glycol methyl ether) under mild reaction conditions (120 °C). …”
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  9. 1809
    “…Novel Al-based MPTBs calcined at 700 °C in O(2) (AlO7) showed almost zero onset overpotential, high current density, high turnover frequency for OER and steady catalysis in repeated use even after 30 weeks. …”
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  10. 1810
    “…Here, we synthesize CaFe-layered double hydroxide (CaFe-LDHs) by a simple one-step co-precipitation technique and structural modulation by calcination process. It is applied for the removal of Cl(−), SO(4)(2−), and CO(3)(2−) anions as well as corrosion inhibition on steel rebar in aqueous solutions. …”
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  11. 1811
    por Eisavi, Ronak, Naseri, Kazhal
    Publicado 2021
    “…Magnesium ferrite magnetic nanoparticles were synthesized by a solid-state reaction of magnesium nitrate, hydrated iron(iii) nitrate, NaOH and NaCl salts and then calcined at high temperatures. In order to prevent oxidation and aggregation of magnesium ferrite particles, and also for preparing a new catalyst of supported copper on the magnetic surface, the MgFe(2)O(4) was covered by copper nanoparticles in alkaline medium. …”
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  12. 1812
    “…Herein, 3D mesoporous structures assembled from monoclinic M-phase VO(2) nanoflakes with a pore size of about 2–10 nm were synthesized by a hydrothermal method using Ensete ventricosum fiber (EF) as a template followed by calcination at 450 °C. The prepared film exhibited excellent thermochromic performance with balanced T(lum) = 67.3%, ΔT(sol) = 12.5%, and lowering T(c) to 63.15 °C. …”
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  13. 1813
  14. 1814
  15. 1815
    “…The facile one green step of hydrothermal and also that of calcination provide a promising strategy to recycle waste zinc carbon batteries, which transfers the excellent applications.…”
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  16. 1816
    “…With zinc acetate and butyl titanate as raw materials, pure ZnO and ZnTiO(3)/ZnO composite photocatalysts were synthesized by a sol–gel method and calcined at 550 °C. The crystal structure, morphology, surface area, optical property, and element valence states of samples were characterized and the photocatalytic activity of the prepared photocatalysts were assessed by the degradation of rhodamine B. …”
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  17. 1817
    “…In this study, CeO(2)/Fe(2)O(3), CeO(2)/Mn(2)O(3), and CeO(2)/Mn(2)O(3)/Fe(2)O(3) nanocomposites were synthesized by the calcination of molten salt solutions. The microscopic images confirmed polyhedral nanocrystals of 10–20 nm size, clustered to form nanospheres. …”
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  18. 1818
    “…Besides, the effects of several parameters, including the natural surfactant, reaction time and temperature, calcination, and ultrasonic power and pulse on the catalytic activity of the as-prepared piezocatalysts were studied. …”
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  19. 1819
    “…The T400-Co(3)O(4) that was obtained by calcining ZIF-67 at 400 °C showed the best sensing performance. …”
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  20. 1820
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