Applied Nanoscience

Journal Information
ISSN / EISSN: 21905509 / 21905517
Published by: Springer Nature
Total articles ≅ 2,543

Latest articles in this journal

Amirmasoud Rayati Damavandi, Omid Mirmosayyeb, Narges Ebrahimi, Hamidreza Zalpoor, Parvin Khalilian, Sheyda Yahiazadeh, , , Ponnusamy Senthil Kumar,
Published: 5 December 2022
Applied Nanoscience pp 1-31; https://doi.org/10.1007/s13204-022-02698-x

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, Gnyaneshwar Dasi, Selva Kumar Ramasamy, Prasenjit Kar, Palanivel Sathishkumar, Kuppusamy Thangaraju,
Published: 5 December 2022
Applied Nanoscience pp 1-8; https://doi.org/10.1007/s13204-022-02707-z

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, Mohyeddine Al-Qubati, Mansour Saeed, N. Abdulqawi, Mohammed A. Algradee, Abdelwahab Alwan, A. Mohammed Sultan
Published: 2 December 2022
Applied Nanoscience pp 1-12; https://doi.org/10.1007/s13204-022-02726-w

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, Vivian F. Lotfy
Published: 30 November 2022
Applied Nanoscience pp 1-15; https://doi.org/10.1007/s13204-022-02714-0

Abstract:
This work deals with emphasizing the relation between particle dimension distribution of nanocellulose (PDD) particles with its efficiency as stabilizing/adsorbent agent of Indigo dye. In this respect, different pulping reagents were used in preparation of Rice straw pulps as precursors for nanocelluloses using acid hydrolysis and oxidizing agents [(KMnO4 and NH4)2S2O8] methods. The PDD was estimated by indirect method through processing the TEM images using the software ImageJ. The resulting nanocelluloses were also characterized by X-ray diffraction (XRD) and Fourier-transform infrared spectra (FTIR) together with sulfate ester and carboxyl contents. The data showed the effective role of pulping reagent on PDD. The cellulose nanocrystals (CNCs) from NaOH-AQ pulp, with the longest crystal length (204.4 ± 107.8 nm) and the lowest diameter (6.7 ± 2.3 nm), exhibited most stabilized suspension of dye; however, the highest adsorption capacity was accompanied the oxidized nanocellulose (Ox-NC) from neutral RS pulp with lowest PDD (4.98 ± 1.6 and 90.5 ± 3.14), together with highest COO content (476.46 μmol/g).
, V. Vasyltsiv, M. Kushlyk, D. Slobodzyan, M. Baláž, , K. Szmuc, J. Szlęzak,
Published: 27 November 2022
Applied Nanoscience pp 1-7; https://doi.org/10.1007/s13204-022-02717-x

Abstract:
β-Ga2O3 nanocrystals have been successfully obtained by the high-energy ball milling method. The obtained nanocrystalline powders have been characterized using X-ray diffraction, transmission electron microscopy, energy-dispersive X-ray spectroscopy, and luminescent spectroscopy. X-ray diffraction patterns show a single gallium oxide structure formed in the milling process with a small amount of α-Ga2O3 phase. The grains of irregular shape were identified with the TEM technique. HRTEM images confirmed the formation of the β-Ga2O3 nanocrystals with a size distribution of 50–80 nm. Three luminescence bands peaked at about 2.52, 2.91, and 3.26 eV were observed in photoluminescence spectra. The gradual blue shift of the emission maxima at the excitation in the fundamental absorption edge under the different milling conditions was detected.
Fatemehsadat Dehghani, Sareh Mosleh-Shirazi, Mostafa Shafiee, Seyed Reza Kasaee,
Published: 27 November 2022
Applied Nanoscience pp 1-11; https://doi.org/10.1007/s13204-022-02705-1

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, P. S. Yaremov, O. V. Shvets, N. D. Shcherban
Published: 27 November 2022
Applied Nanoscience pp 1-8; https://doi.org/10.1007/s13204-022-02711-3

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