环臭氧
外观
环臭氧 | |
---|---|
系统名 Trioxirane[1] | |
识别 | |
CAS号 | 153851-84-4 |
PubChem | 16206854 |
ChemSpider | 13375217 |
SMILES |
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InChI |
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InChIKey | XQOAKYYZMDCSIA-UHFFFAOYSA-N |
性质 | |
化学式 | O3 |
摩尔质量 | 48 g·mol−1 |
若非注明,所有数据均出自标准状态(25 ℃,100 kPa)下。 |
环臭氧是一种假设的氧的同素异形体,其与臭氧分子一样有三颗氧原子,但并非角型而是成环状。
简介
[编辑]直到目前,不同的理论研究已确定环臭氧存在的可能。[2][3][4]另外也有实验指在1450℃以上在氧化镁的表面重构中识别出微量环臭氧。[5]目前它并未能大量制造,而其中一个不成功的尝试是借助激光。[6]另一个被提出的可能办法是在一个加以限制的空间内使其稳定,例如富勒烯。[3]
科学家对其特性有一些预测,如其标准摩尔生成焓比臭氧高130 kJ mol−1,而它生成臭氧的活化能为95 kJ mol−1。[7]另外又有建议指,若果环臭氧能大量制造,且它较为稳定,便可加入液态氧中以增加火箭燃料的比冲量。[6]
参考
[编辑]- ^ CID 16206854 - Compound Summary. PubChem Compound. USA: National Center for Biotechnology Information. Identification and Related Records. 11 July 2007 [21 October 2011]. (原始内容存档于2012-10-25).
- ^ Xantheas, Sotiris; Atchity, Gregory; Elbert, Stephen; Ruedenberg, Klaus. Potential energy surfaces of ozone. I. J. Chem. Phys. 1991, 94 (12): 8054. Bibcode:1991JChPh..94.8054X. doi:10.1063/1.460140.
- ^ 3.0 3.1 Sabirov, Denis; Igor, Shepelevich. Information entropy of oxygen allotropes. A still open discussion about the closed form of ozone. Computational and Theoretical Chemistry. 2015, 1073 (1): 61–66. doi:10.1016/j.comptc.2015.09.016.
- ^ Lee, Timothy. On the energy separation between the open and cyclic forms of ozone. Chemical Physics Letters. 1990, 169 (6): 529–533. Bibcode:1990CPL...169..529L. doi:10.1016/0009-2614(90)85642-P.
- ^ Plass, Richard; Kenneth Egan; Chris Collazo-Davila; Daniel Grozea; Eric Landree; Laurence D. Marks; Marija Gajdardziska-Josifovska. Cyclic Ozone Identified in Magnesium Oxide (111) Surface Reconstructions (PDF). Physical Review Letters. November 30, 1998, 81 (22): 4891–4894 [2010-06-05]. Bibcode:1998PhRvL..81.4891P. doi:10.1103/PhysRevLett.81.4891. (原始内容存档 (PDF)于2021-03-26).
- ^ 6.0 6.1 Temple Researcher Attempting To Create Cyclic Ozone. Science Daily. February 8, 2005 [2010-06-05]. (原始内容存档于2016-11-29).
- ^ Hoffmann, Roald. The story of O. The Ring. American Scientist. January–February 2004, 92 (1): 23–24. doi:10.1511/2004.1.23.