^A. W. Snow, H. Haubenstock, N.-L. Yang (1978). “Poly(carbon suboxide). Characterization, Polymerization, and Radical Structure”. Macromolecules11 (1): 77–86. doi:10.1021/ma60061a015.
^Brodie B. C. (1873). “Note on the Synthesis of Marsh-Gas and Formic Acid, and on the Electric Decomposition of Carbonic Oxide”. Proceedings of the Royal Society (London)21 (139–147): 245–247. doi:10.1098/rspl.1872.0052. JSTOR113037.
^DeMore W. B., Jacobsen C. W. (1969). “Formation of carbon trioxide in the photolysis of ozone in liquid carbon dioxide”. Journal of Physical Chemistry73 (9): 2935–2938. doi:10.1021/j100843a026.
^Laurence Y. Yeung, Mitchio Okumura, Jeffrey T. Paci, George C. Schatz, Jianming Zhang and Timothy K. Minton (2009). “HyperthermalO-Atom Exchange ReactionO2 +CO2 through aCO4 Intermediate”. J. Am. Chem. Soc.131 (39): 13940–13942. doi:10.1021/ja903944k.
^Corey S. Jamieson, Alexander M. Mebel, Ralf I. Kaiser (2007). “Novel detection of the C2v isomer of carbon tetraoxide (CO4)”. Chem. Phys. Lett.440 (1–3): 105–109. doi:10.1016/j.cplett.2007.04.043.
^Herman F. Cordes, Herbert P. Richter, Carl A. Heller (1969). “Mass spectrometric evidence for the existence of 1,2-dioxetanedione (carbon dioxide dimer) Chemiluminescent intermediate”. J. Am. Chem. Soc.91 (25): 7209. doi:10.1021/ja01053a065.
^Richard Bos, Neil W. Barnett, Gail A. Dyson, Kieran F. Lim, Richard A. Russell and Simon P. Watson (2004). “Studies on the mechanism of the peroxyoxalate chemiluminescence reaction: Part 1. Confirmation of 1,2-dioxetanedione as an intermediate using13C nuclear magnetic resonance spectroscopy”. Analytica Chimica Acta502 (2): 141-147. doi:10.1016/j.aca.2003.10.014.
^abcDetlef Schröder; Christoph Heinemann, Helmut Schwarz, Jeremy N. Harvey, Suresh Dua, Stephen J. Blanksby, John H. Bowie (1998). “Ethylenedione: An Intrinsically Short-Lived Molecule”. Chemistry - A European Journal4 (12): 2550–2557. doi:10.1002/(SICI)1521-3765(19981204)4:12<2550::AID-CHEM2550>3.0.CO;2-E.
^ab Errol Lewars(1996),Polymers and oligomers of carbon dioxide: ab initio and semiempirical calculations. Journal of Molecular Structure: THEOCHEM, Volume 363, Number 1, pp. 1–15
^Shirel Matthew L., Pulay Peter (1999). “Stability of Novel Oxo- and Chloro-Substituted Trioxanes”. J. Am. Chem. Soc.121 (37): 8544–8548. doi:10.1021/ja984451j.
^abGünter Maier and Hans Peter Reisenauer (2001). “Carbenes in Matrices: Specrospcopy, Structure, and Photochemical Behavior”. In Udo H. Brinker (ed.). Advances in carbene chemistry. Elsevier. pp. 135. ISBN9780444508928
^abW. Kutzelnigg (2002). Einführung in die Theoretische Chemie. Wiley-VCH. ISBN3-527-30609-9
^Günther Maier, Hans Peter Reisenauer, Heinz Balli, Willy Brandt, Rudolf Janoschek (1990). “C4O2 (1,2,3-Butatriene-1,4-dione), the First Dioxide of Carbon with an Even Number of C Atoms”. Angew. Chem. Int. Ed.29 (8): 905–908. doi:10.1002/anie.199009051.
^Günther Maier, Hans Peter Reisenauer, Ulrich Schäfer, and Heinz Balli (1988). “C5O2 (1,2,3,4-Pentatetraene-1,5-dione), a New Oxide of Carbon”. Angew. Chem. Int. Ed.27 (4): 566–568. doi:10.1002/anie.198805661.
^abcFrank W. Eastwood (1997). “Gas Phase Pyrolytic Methods for the Preparation of Carbon-Hydrogen and Carbon-Hydrogen-Oxygen Compounds”. In Yannick Vallée. Gas Phase Reactions in Organic Synthesis. CRC Press. ISBN9789056990817
^abOgata Teruhiko, Tatamitani Yoshio (2008). “The Simplest Linear-Carbon-Chain Growth by Atomic-Carbon Addition and Ring Opening Reactions”. J. Phys. Chem. A112 (43): 10713–10715. doi:10.1021/jp806725s. PMID18834097.
^abcGunther Seitz, Peter Imming (1992). “Oxocarbons and pseudooxocarbons”. Chem. Rev.92 (6): 1227–1260. doi:10.1021/cr00014a004.
^Detlef Schröder,; Helmut Schwarz, Suresh Dua, Stephen J. Blanksby and John H. Bowie (May 1999). “Mass spectrometric studies of the oxocarbons CnOn (n = 3–6)”. International Journal of Mass Spectrometry188 (1–2): 17–25. doi:10.1016/S1387-3806(98)14208-2.
^ Richard B. Wyrwas and Caroline Chick Jarrold (2006),Production of C6O6- from Oligomerization ofCO on Molybdenum Anions. J. Am. Chem. Soc. volume 128 issue 42, pages 13688–13689.doi:10.1021/ja0643927
^ Werner Büchner, E. Weiss (1963)Zur Kenntnis der sogenannten «Alkalicarbonyle» I Die Kristallstruktur des Kalium-acetylendiolats, KOC≡COK. Helvetica Chimica Acta, Volume 46 Issue 4, Pages 1121–1127.doi:10.1002/hlca.19630460404
^ David Eggerding and Robert West (1976),Synthesis and Properties of Deltic Acid (Dihydroxycyclopropenone) and the Deltate Ion J. American Chemical Society, volume 98, p, 3641–3644.doi:10.1021/ja00428a043
^Eggerding David, West Robert (1975). “Synthesis of Dihydroxycyclopropenone (Deltic Acid)”. J. American Chemical Society97 (1): 207–208. doi:10.1021/ja00834a047.
^Cohen Sidney, Lacher John R., Park Joseph D. (1959). “Diketocyclobutanediol”. J. American Chemical Society81 (13): 3480. doi:10.1021/ja01522a083.
^ Leopold Gmelin (1825),Ueber einige merkwürdige, bei der Darstellung des Kaliums nach der Brunner'schen Methode, erhaltene Substanzen. Poggendorfs Annalen der Physik und Chemie, volume 4, p. 31.Online version accessed on 2009-07-08.
^ Johann Florian Heller (1837),Die Rhodizonsäure, eine aus den Produkten der Kaliumbereitung gewonnene neue Säure, und ihre chemischen Verhältnisse, Justus Liebigs Annalen der Pharmacie, volume 24, issue 1, pp. 1–16.Online version accessed on 2009-07-08.
^ Carl Löwig (1839),Chemie der organischen Verbindungen. F. Schultess, Zürich.
^ Haiyan Chen, Michel Armand, Matthieu Courty, Meng Jiang, Clare P. Grey, Franck Dolhem, Jean-Marie Tarascon, and Philippe Poizot (2009),Lithium Salt of Tetrahydroxybenzoquinone: Toward the Development of a Sustainable Li-Ion Battery J. Am. Chem. Soc., 131 (25), pp. 8984–8988doi:10.1021/ja9024897
^ R. West, J. Niu (1969,Non-benzenoid aromatics. Vol. 1. Edited by J. Snyder. Academic Press New York.
^Schleyer, P. v. R.; Najafian, K.; Kiran, B.; Jiao, H. (2000). “Are Oxocarbon Dianions Aromatic?”. J. Org. Chem.65 (2): 426–431. doi:10.1021/jo991267n. PMID10813951.