| Literature DB >> 27869221 |
Yu Miao1, Yanxuan Qiu1, Jiawei Cai1, Zizhou Wang1, Xinwei Yu1, Wen Dong1.
Abstract
The in-situ nano-crystal-to-crystal transformation (SCCT) synthesis provides a powerful approach for tailoring controllable feature shapes and sizes of nano crystals. In this work, three nitrogen-rich energetic nano-crystals based on 5,5'-azotetrazolate(AZT2-) Cr(III) salts were synthesized by means of SCCT methodology. SEM and TEM analyses show that the energetic nano-crystals feature a composition- and structure-dependent together with size-dependent thermal stability. Moreover, nano-scale decomposition products can be obtained above 500 °C, providing a new method for preparing metallic oxide nano materials.Entities:
Year: 2016 PMID: 27869221 PMCID: PMC5116643 DOI: 10.1038/srep37587
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Preparation of 1–3 and transformation progress from 1 to 2 and 3 and their decomposed products above 500 °C.
Figure 2SEM and TEM images of nano crystals of 1 (a1, a2), 2 (b1, b2) and 3 (c1, c2) and their nano-scale dehydrated and decomposed products (a3–a6, b3–b6, c3–c6).
High-resolution TEM images showing different lattice of crystals of 1–3 (a7, b7, c7).
Figure 3XPS for nano crystals of 1–3 (a, b, c) and their decomposed products at 200 and 500 °C.
Figure 4TG and DSC analysis for micro/nano crystals 1–3.
The sensitivity characteristics for nano crystals of 1–3.
| Samples | Impact sensitivity (%) | Friction sensitivity (%) | Flame Sensitivity (cm) | Electrostatic sensitivity (%) |
|---|---|---|---|---|
| 78 (64–88) | 24 (13–38) | <1 | 0 (0, 0) | |
| 56 (41–70) | 96 (87–100) | 3.1 | 0 (0, 0) | |
| 12 (4–25) | 90 (78–97) | <1 | 0 (0, 7) | |
| RDX | 72–78 | 88 | ||
| HMX | 100 | 100 |