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Search for "sonochemistry" in Full Text gives 5 result(s) in Beilstein Journal of Nanotechnology.

Self-standing heterostructured NiCx-NiFe-NC/biochar as a highly efficient cathode for lithium–oxygen batteries

  • Shengyu Jing,
  • Xu Gong,
  • Shan Ji,
  • Linhui Jia,
  • Bruno G. Pollet,
  • Sheng Yan and
  • Huagen Liang

Beilstein J. Nanotechnol. 2020, 11, 1809–1821, doi:10.3762/bjnano.11.163

Graphical Abstract
  • , 314001, China Low Carbon Energy Institute, China University of Mining and Technology, Xuzhou, Jiangsu 221008, China Hydrogen Energy and Sonochemistry Research Group, Department of Energy and Process Engineering, Faculty of Engineering, Norwegian University of Science and Technology, NO-7491 Trondheim
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Published 02 Dec 2020

Understanding the performance and mechanism of Mg-containing oxides as support catalysts in the thermal dry reforming of methane

  • Nor Fazila Khairudin,
  • Mohd Farid Fahmi Sukri,
  • Mehrnoush Khavarian and
  • Abdul Rahman Mohamed

Beilstein J. Nanotechnol. 2018, 9, 1162–1183, doi:10.3762/bjnano.9.108

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  • in DRM. Application of MgO as a co-support Abdollahifar et al. [49] investigated catalyst performance by applying the ultrasound-assisted impregnation (sonochemistry) method in the synthesis of a Ni/Al2O3–MgO catalyst for a DRM reaction. The measured surface area for the Ni/Al2O3–MgO catalyst was
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Published 13 Apr 2018

Ester formation at the liquid–solid interface

  • Nguyen T. N. Ha,
  • Thiruvancheril G. Gopakumar,
  • Nguyen D. C. Yen,
  • Carola Mende,
  • Lars Smykalla,
  • Maik Schlesinger,
  • Roy Buschbeck,
  • Tobias Rüffer,
  • Heinrich Lang,
  • Michael Mehring and
  • Michael Hietschold

Beilstein J. Nanotechnol. 2017, 8, 2139–2150, doi:10.3762/bjnano.8.213

Graphical Abstract
  • , diester and decarboxylation products. If these products would be the origin of the assembly at the interface, one should expect only a disordered phase, which is not the case in the experiments. Possible sonochemistry products formed in the solutions are most likely stabilized within the solutions and do
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Published 12 Oct 2017

Sonochemical co-deposition of antibacterial nanoparticles and dyes on textiles

  • Ilana Perelshtein,
  • Anat Lipovsky,
  • Nina Perkas,
  • Tzanko Tzanov and
  • Aharon Gedanken

Beilstein J. Nanotechnol. 2016, 7, 1–8, doi:10.3762/bjnano.7.1

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  • , however, find only one report in which sonochemistry was used for the co-deposition of AgNPs and AgCl on TiO2 NPs to form Ag@TiO2 and Ag/AgCl@TiO2 [18]. The synthetic process revealed that in fact it was a one-step process combining Ag+, TiO2 NPs, and NaCl in ethylene glycol solution. The sonochemical
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Published 04 Jan 2016

Forming nanoparticles of water-soluble ionic molecules and embedding them into polymer and glass substrates

  • Stella Kiel,
  • Olga Grinberg,
  • Nina Perkas,
  • Jerome Charmet,
  • Herbert Kepner and
  • Aharon Gedanken

Beilstein J. Nanotechnol. 2012, 3, 267–276, doi:10.3762/bjnano.3.30

Graphical Abstract
  • mechanism of the ultrasound-assisted coating is proposed. Keywords: deposition; ionic salt nanoparticles; parylene; sonochemistry; Introduction The incorporation of nanocrystals into dielectric matrices, such as glass or polymers, has become a topic of broad interest in recent years. The research in the
  • method was applied to NaCl, CuSO4, and KI. The general method suggested for the preparation of water-soluble ionic NPs is sonochemistry. The salt nanocrystals of NaCl, CuSO4 and KI were immobilized from the aqueous solution of the dissolved ionic compounds onto the microscope glass slides, parylene
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Published 21 Mar 2012
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