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Synthesis of the hitherto elusive formylphosphine (HCOPH2) in the interstellar medium - a molecule with an exotic phosphorus peptide bond

机译:星际介质中迄今难以捉摸的甲酰基膦(HCOPH2)的合成-一种具有外来磷肽键的分子

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摘要

The formylphosphine (HCOPH2) molecule was detected in the gas phase via isomer selective photoionization reflectron time-of-flight mass spectrometry (PI-ReTOF-MS). Synthesized in carbon monoxide (CO)-phosphine ices (PH3) exposed to ionizing radiation, the formation mechanism involves an initial phosphorus-hydrogen bond rupture in phosphine yielding the phosphino radical (PH2) along with atomic hydrogen, addition of the suprathermal hydrogen atom to carbon monoxide leading to the formyl radical (HCO), and recombination of both radicals to formylphosphine (HCOPH2). This molecule represents the isovalent counterpart of the ubiquitous interstellar formamide (HCONH2). This study provides a fundamental framework to explore the synthesis and stability of the simplest isovalent counterpart of interstellar formamide (HCONH2) and suggests that formylphosphine (HCOPH2) should be detectable in the interstellar medium eventually providing a missing link between phosphorus-bearing complex organic molecules detected in the interstellar medium and on comet 67P/Churyumov-Gerasimenko.
机译:通过异构体选择性光电离反射电子飞行时间质谱(PI-ReTOF-MS)在气相中检测到甲酰基膦(HCOPH2)分子。在暴露于电离辐射的一氧化碳(CO)-膦冰(PH3)中合成,形成机理涉及磷化氢中最初的磷-氢键断裂,产生膦基(PH2)和原子氢,并向其中添加超热氢原子一氧化碳导致形成甲酰基(HCO),并且两个自由基重组为甲酰基膦(HCOPH2)。该分子代表普遍存在的星际甲酰胺(HCONH2)的等价对应物。这项研究为探索星际甲酰胺(HCONH2)的最简单等价对应物的合成和稳定性提供了基本框架,并建议在星际介质中应可检测到甲酰基膦(HCOPH2),从而最终在检测到的含磷复杂有机分子之间提供了缺失的联系在星际介质和67P / Churyumov-Gerasimenko彗星上。

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