| Literature DB >> 31844080 |
Shijiao Zhao1,2,3, Jingtao Ma4,5,6, Rui Xu1,2,3, Xuping Lin1,2,3, Xing Cheng2,3, Shaochang Hao2,3, Xingyu Zhao2,3, Changsheng Deng1,2,3, Bing Liu2,3.
Abstract
Zirconium compounds has been widely attention over the last decades due to its excellent physical and chemical properties. Zirconium nitride nanopowders were synthesized via a simple direct carbothermic nitridation process of internal gel derived zirconia in the presence of nano-sized carbon black. The effects of reaction temperature, dwell time and molar ratio of carbon black to Zr (C/Zr) on the phase composition, grain size and crystal parameters of products were studied. Based upon the analysis of crystallite phase evolution and microstructure characterization, it was found that zirconium oxynitride is intermediate product and then O atoms in oxynitride were extracted by oxygen getter, carbon black. Anion sites were directly replaced by N atoms to form rock-salt type nitride in carbothermic nitridation process.Entities:
Year: 2019 PMID: 31844080 PMCID: PMC6915743 DOI: 10.1038/s41598-019-55450-x
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1XRD patterns of samples treated at different temperatures for 5 h with C/Zr = 2.
Grain size of products of zirconium nitride phase.
| Temperature (°C) | Dwell time (h) | Grain size (nm) |
|---|---|---|
| 1400 | 5 | 75 |
| 1450 | 5 | 50 |
| 1500 | 5 | 54 |
The error is about 1 nm.
Figure 2XRD patterns of samples treated at 1400 °C for different dwell time with C/Zr = 2.
Figure 3XRD patterns of samples treated at 1400 °C for 5 h with different C/Zr (0–3).
Lattice parameters of Zr(N,C,O) in different samples.
| Temperature (°C) | Dwell time (h) | C/Zr molar ratio | Lattice parameter (Å) |
|---|---|---|---|
| 1300 | 5 | 2 | 4.524 |
| 1350 | 5 | 2 | 4.594 |
| 1400 | 2 | 2 | 4.559 |
| 1400 | 3 | 2 | 4.564 |
| 1400 | 4 | 2 | 4.575 |
| 1400 | 5 | 1 | 4.584 |
| 1400 | 5 | 3 | 4.575 |
(The columns with bold words are products of zirconium nitride phase according to XRD patterns).
The error is about 1 × 10−3 Å.
Figure 4Microscopic images of under-reacted product obtained at 1350 °C for 5 h with C/Zr = 2. (a) Overview image; (b) morphology of angular-shaped particle and associated SAED pattern, corresponding to area A in (a); (c) HRTEM image of nanocrystalline in this product, corresponding to area B in (a).
Figure 5Microscopic images of carbon black particles. (a) Overview and (b) HRTEM image of original carbon black particles; (c~e) HRTEM images of carbon black particles in under-reacted product obtained at 1350 °C for 5 h.
Figure 6Microscopic images of fully reacted product obtained at 1400 °C for 5 h. (a) FE-SEM image; (b) TEM image; (c,d) HRTEM images and associated SAED patterns of product.