首页> 外文期刊>Canadian Journal of Chemistry >Comparative DFT-D studies on structural and absorption properties of crystalline 3,3 '-dinitroamino-4,4 '-azoxyfurazan, 3,3 '-dinitro-4,4 '-azoxyfurazan, and 3,4-bis(3-nitrofurazan-4-yl) furoxan under high pressures
【24h】

Comparative DFT-D studies on structural and absorption properties of crystalline 3,3 '-dinitroamino-4,4 '-azoxyfurazan, 3,3 '-dinitro-4,4 '-azoxyfurazan, and 3,4-bis(3-nitrofurazan-4-yl) furoxan under high pressures

机译:比较DFT-D研究晶体3,3'-dinitroamino-4,4'-azoxyfurazan,3,3'-dinitro-4,4'-azoxyfurazan和3,4-bis(3-nitrofurazan)的结构和吸收性能-4-yl)呋喃喃在高压下

获取原文
获取原文并翻译 | 示例
       

摘要

The structural, electronic, and absorption properties of crystalline 3,3'-dinitroamino-4,4'-azoxyfurazan (DNOAAF), 3,3'-dinitro-4,4'-azoxyfurazan (DNOAF), and 3,4-bis(3-nitrofurazan-4-yl) furoxan (BNTF) under hydrostatic compression of 0-190 GPa have been comparatively studied using density functional theory with dispersion corrections. Their crystal structures were relaxed using three types of vdW corrections such as the PBE-G06, PBE-TS, and PW91-OBS functionals at ambient conditions. The results indicate that PBE-G06 is the best functional for studying them. The compression ratios show that DNOAAF is stiffer than the other two at high pressures. An analysis of the band gaps and density of states indicates that they become more and more sensitive under compression. In the range of 0-120 GPa, BNTF is the most unstable. However, in the range of 120-190 GPa, DNOAF becomes the more unstable. The three crystals have higher optical activity at high pressures, and moreover, applied pressures change their optical adsorption activity order.
机译:晶体3,3'-dinitroamino-4,4'-azoxyfurazan(DNOAAF),3,3'-dinitro-4,4'-azoxyfurazan(DNOAF)和3,4-bis的结构,电子和吸收性质使用密度泛函理论和色散校正,对(3-硝基呋喃zan-4-基)呋喃喃(BNTF)在0-190 GPa的静水压力下进行了比较研究。在环境条件下,使用三种类型的vdW校正(例如PBE-G06,PBE-TS和PW91-OBS功能)来放松其晶体结构。结果表明,PBE-G06是研究它们的最佳功能。压缩比表明,在高压下,DNOAAF比其他两个更坚硬。对带隙和状态密度的分析表明,它们在压缩下变得越来越敏感。在0-120 GPa的范围内,BNTF最不稳定。但是,在120-190 GPa的范围内,DNOAF变得更加不稳定。这三种晶体在高压下具有较高的光学活性,此外,施加的压力会改变其光学吸附活性的顺序。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号