Ahmad, P. and Khandaker, M.U. and Amin, Y.M. and Muhammad, N. and Khan, G. and Khan, A.S. and Numan, A. and Rehman, M.A. and Ahmed, S.M. and Khan, A. (2016) Synthesis of hexagonal boron nitride fibers within two hour annealing at 500 °C and two hour growth duration at 1000 °C. Ceramics International, 42 (13). pp. 14661-14666. ISSN 02728842
Full text not available from this repository.Abstract
Several advantageous features like low density, large surface area, high porosity and tight pore size make the nanofiber suitable for a wide range of applications from medical to consumer products and industrial to high-tech applications. Present study concerns the synthesis of hexagonal boron nitride fibers (�=70�350 nm) from a mixture of Boron, Magnesium oxide and Iron oxide powders via a simple CVD technique. A relatively long annealing and growth duration of two hours at 500 °C and 1000 °C, respectively were utilized in this synthesis. The synthesized samples seem to have the BNFs of irregular curved human hair-like morphologies in lower resolution and solid cylinder-like structures in high resolution transmission electron microscopy. The presence of Boron and Nitrogen in the synthesized BNF's sample were confirmed via the B 1s peak at 190.7 eV and N 1s peak at 398.3 eV in the XPS survey whereas a major peak at 1370 (cm�1) in the Raman spectrum corresponds to the vibration of E2g mode in h-BN. The sharp peaks in the XRD pattern verify the h-BN phase and highly crystalline nature of the synthesized BNFs. © 2016 Elsevier Ltd and Techna Group S.r.l.
Item Type: | Article |
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Additional Information: | cited By 10 |
Uncontrolled Keywords: | Annealing; Boron nitride; Consumer products; Cylinders (shapes); Etching; Nitrides; Pore size; Synthesis (chemical), BNFs; Crystalline nature; Hexagonal boron nitride; High porosity; High-tech applications; Large surface area; Lower resolution; Solid cylinders, High resolution transmission electron microscopy |
Depositing User: | Mr Ahmad Suhairi UTP |
Date Deposited: | 09 Nov 2023 16:18 |
Last Modified: | 09 Nov 2023 16:18 |
URI: | https://khub.utp.edu.my/scholars/id/eprint/6809 |