首页> 外文期刊>Journal of Analytical & Applied Pyrolysis >Difluoroacetyl azide: Synthesis, characterization, and decomposition
【24h】

Difluoroacetyl azide: Synthesis, characterization, and decomposition

机译:二氟乙酰叠氮化物:合成,表征和分解

获取原文
获取原文并翻译 | 示例
       

摘要

Difluoroacetyl azide, CHF2C(O)N-3, has been synthesized and characterized. The azide decomposes slowly at room temperature (300 K) into N-2 and difluoromethyl isocyanate CHF2NCO, which has also been isolated as neat substance and fully characterized. The elusive nitrene intermediate CHF2C(O)N in the stepwise Curtiusrearrangement of the azide is tentatively identified by IR spectroscopy during the 193 nm laser photolysis of the azide in solid Ne matrix at 2.8 K. Unexpectedly, flash vacuum pyrolysis (FVP) of CHF2C(O)N-3 at 500 K yields a novel carbonyl isocyanide FC(O)NC with N-2, HF, FCN, CO, and traces of CHF2NCO. Subsequent irradiation (193 nm) of the pyrolysis products results in the rearrangement of FC(0)NC to FC(O)CN. According to the quantum chemical calculations (B3LYP and CCSD(T)), the azide CHF2C(O)N-3 prefers concerted Curtius rearrangement with minor contribution of the stepwise decomposition. The thermally generated CHF2NCO eliminates HF and forms FC(O)NC solely under the pyrolysis conditions, whereas, no HF-elimination occurs to isolated CHF2NCO even at 1000 K due to a formidable activation barrier.
机译:已经合成并表征了二氟乙酰叠氮化物CHF2C(O)N-3。叠氮化物在室温(300 K)下缓慢分解为N-2和二氟甲基异氰酸酯CHF2NCO,它们也已被分离为纯净物质并进行了充分表征。在193 K于2.8 K的固体Ne基质中对叠氮化物进行193 nm激光光解时,通过IR光谱法初步确定了叠氮化物逐步弯曲重排中难以捉摸的中间体CHF2C(O)N。 O)N-3在500 K时产生具有N-2,HF,FCN,CO和痕量CHF2NCO的新型羰基异氰化物FC(O)NC。随后的热解产物辐照(193 nm)导致FC(0)NC重排为FC(O)CN。根据量子化学计算(B3LYP和CCSD(T)),叠氮化物CHF2C(O)N-3更喜欢协调的库尔修斯重排,而逐步分解的贡献很小。热生成的CHF2NCO仅在热解条件下会消除HF并形成FC(O)NC,而即使在1000 K时,由于强大的活化势垒,分离出的CHF2NCO也不会发生HF消除。

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