^Scott, L. T.; Bronstein, H. E.; Preda, D. V.; Ansems, R. B. M.; Bratcher, M. S.; Hagen, Stefan. Geodesic polyarenes with exposed concave surfaces. Pure and Applied Chemistry (Walter de Gruyter GmbH). 1999-01-28, 71 (2). ISSN 1365-3075. doi:10.1351/pac199971020209.
^ 2.02.1Scott, Lawrence T.; Hashemi, Mohammed M.; Bratcher, Matthew S. Corannulene bowl-to-bowl inversion is rapid at room temperature. Journal of the American Chemical Society (American Chemical Society (ACS)). 1992, 114 (5): 1920–1921. ISSN 0002-7863. doi:10.1021/ja00031a079.
^ 3.03.1Barth, Wayne E.; Lawton, Richard G. Dibenzo[ghi,mno]fluoranthene. Journal of the American Chemical Society (American Chemical Society (ACS)). 1966, 88 (2): 380–381. ISSN 0002-7863. doi:10.1021/ja00954a049.
^Scott, Lawrence T.; Hashemi, Mohammed M.; Meyer, Dayton T.; Warren, Hope B. Corannulene. A convenient new synthesis. Journal of the American Chemical Society (American Chemical Society (ACS)). 1991, 113 (18): 7082–7084. ISSN 0002-7863. doi:10.1021/ja00018a082.
^Sygula, Andrzej; Rabideau, Peter W. A Practical, Large Scale Synthesis of the Corannulene System. Journal of the American Chemical Society (American Chemical Society (ACS)). 2000, 122 (26): 6323–6324. ISSN 0002-7863. doi:10.1021/ja0011461.
^Wu, Yao-Ting; Bandera, Davide; Maag, Roman; Linden, Anthony; Baldridge, Kim K.; Siegel, Jay S. Multiethynyl Corannulenes: Synthesis, Structure, and Properties. Journal of the American Chemical Society (American Chemical Society (ACS)). 2008, 130 (32): 10729–10739. ISSN 0002-7863. doi:10.1021/ja802334n.
^Gershoni-Poranne, Renana; Pappo, Doron; Solel, Ephrath; Keinan, Ehud. Corannulene Ethers via Ullmann Condensation. Organic Letters (American Chemical Society (ACS)). 2009-11-19, 11 (22): 5146–5149. ISSN 1523-7060. doi:10.1021/ol902352k.
^Baldridge, Kim K.; Hardcastle, Kenneth I.; Seiders, T. Jon; Siegel, Jay S. Synthesis, structure and properties of decakis(phenylthio)corannulene. Org. Biomol. Chem. (Royal Society of Chemistry (RSC)). 2010, 8 (1): 53–55. ISSN 1477-0520. doi:10.1039/b919616a.
^Choi, Hyunbong; Kim, Chulwoo; Park, Ki-Min; Kim, Jinho; Kang, Youngjin; Ko, Jaejung. Synthesis and structure of penta-platinum σ-bonded derivatives of corannulene. Journal of Organometallic Chemistry (Elsevier BV). 2009, 694 (22): 3529–3532. ISSN 0022-328X. doi:10.1016/j.jorganchem.2009.07.015.
^ 11.011.1Pappo, Doron; Mejuch, Tom; Reany, Ofer; Solel, Ephrath; Gurram, Mahender; Keinan, Ehud. Diverse Functionalization of Corannulene: Easy Access to Pentagonal Superstructure. Organic Letters (American Chemical Society (ACS)). 2009-03-05, 11 (5): 1063–1066. ISSN 1523-7060. doi:10.1021/ol8028127.
^Nishida, Shinsuke; Morita, Yasushi; Ueda, Akira; Kobayashi, Tadahiro; Fukui, Kozo; Ogasawara, Kanako; Sato, Kazunobu; Takui, Takeji; Nakasuji, Kazuhiro. Curve-Structured Phenalenyl Chemistry: Synthesis, Electronic Structure, and Bowl-Inversion Barrier of a Phenalenyl-Fused Corannulene Anion. Journal of the American Chemical Society (American Chemical Society (ACS)). 2008-11-12, 130 (45): 14954–14955. ISSN 0002-7863. doi:10.1021/ja806708j.
^Steinberg, Brian D.; Jackson, Edward A.; Filatov, Alexander S.; Wakamiya, Atsushi; Petrukhina, Marina A.; Scott, Lawrence T. Aromatic π-Systems More Curved Than C60. The Complete Family of All Indenocorannulenes Synthesized by Iterative Microwave-Assisted Intramolecular Arylations. Journal of the American Chemical Society (American Chemical Society (ACS)). 2009-08-05, 131 (30): 10537–10545. ISSN 0002-7863. doi:10.1021/ja9031852.
^Corannulenylferrocenes: towards a 1D, non-covalent metal–organic nanowire Berit Topolinski , Bernd M. Schmidt , Michael Kathan , Sergej I. Troyanov and Dieter Lentz Chem. Commun., 2012,48, 6298-6300 doi:10.1039/C2CC32275G
^Sygula, Andrzej; Rabideau, Peter W. Structure and inversion barriers of corannulene, its dianion and tetraanion. An ab initio study. Journal of Molecular Structure: THEOCHEM (Elsevier BV). 1995, 333 (3): 215–226. ISSN 0166-1280. doi:10.1016/0166-1280(94)03961-j.
^Monaco, Guglielmo; Scott, Lawrence T.; Zanasi, Riccardo. Magnetic Euripi in Corannulene. The Journal of Physical Chemistry A (American Chemical Society (ACS)). 2008-09-04, 112 (35): 8136–8147. ISSN 1089-5639. doi:10.1021/jp8038779.
^Sygula, Andrzej; Fronczek, Frank R.; Sygula, Renata; Rabideau, Peter W.; Olmstead, Marilyn M. A Double Concave Hydrocarbon Buckycatcher. Journal of the American Chemical Society (American Chemical Society (ACS)). 2007, 129 (13): 3842–3843. ISSN 0002-7863. doi:10.1021/ja070616p.
^Wong, Bryan M. Noncovalent interactions in supramolecular complexes: A study on corannulene and the double concave buckycatcher. Journal of Computational Chemistry (Wiley-Blackwell). 2009-01-15, 30 (1): 51–56. ISSN 0192-8651. doi:10.1002/jcc.21022.
^Kobryn, Lesya; Henry, William P.; Fronczek, Frank R.; Sygula, Renata; Sygula, Andrzej. Molecular clips and tweezers with corannulene pincers. Tetrahedron Letters (Elsevier BV). 2009, 50 (51): 7124–7127. ISSN 0040-4039. doi:10.1016/j.tetlet.2009.09.177.
^Miyajima, Daigo; Tashiro, Kentaro; Araoka, Fumito; Takezoe, Hideo; Kim, Jungeun; Kato, Kenichi; Takata, Masaki; Aida, Takuzo. Liquid Crystalline Corannulene Responsive to Electric Field. Journal of the American Chemical Society (American Chemical Society (ACS)). 2009-01-14, 131 (1): 44–45. ISSN 0002-7863. doi:10.1021/ja808396b.
^Hexahapto Metal Coordination to Curved Polyaromatic Hydrocarbon Surfaces: The First Transition Metal Corannulene Complex T. Jon Seiders, Kim K. Baldridge, Joseph M. O'Connor, and Jay S. Siegel J. Am. Chem. Soc., 1997, 119 (20), pp 4781–4782 doi:10.1021/ja964380t
^d8 Rhodium and Iridium Complexes of Corannulene Jay S. Siegel, Kim K. Baldridge, Anthony Linden, and Reto Dorta J. Am. Chem. Soc., 2006, 128 (33), pp 10644–10645 doi:10.1021/ja062110x
^Petrukhina, Marina A. Coordination of Buckybowls: The First Concave-Bound Metal Complex. Angewandte Chemie International Edition (Wiley-Blackwell). 2008-02-15, 47 (9): 1550–1552. ISSN 1433-7851. doi:10.1002/anie.200704783.
^Zhu, Bolin; Ellern, Arkady; Sygula, Andrzej; Sygula, Renata; Angelici, Robert J. η6-Coordination of the Curved Carbon Surface of Corannulene (C20H10) to (η6-arene)M2+(M = Ru, Os). Organometallics (American Chemical Society (ACS)). 2007, 26 (7): 1721–1728. ISSN 0276-7333. doi:10.1021/om0610795.
^Petrukhina, Marina A.; Sevryugina, Yulia; Rogachev, Andrey Yu.; Jackson, Edward A.; Scott, Lawrence T. Corannulene: A Preference forexo-Metal Binding. X-ray Structural Characterization of [Ru2(O2CCF3)2(CO)4·(η2-C20H10)2]. Organometallics (American Chemical Society (ACS)). 2006, 25 (22): 5492–5495. ISSN 0276-7333. doi:10.1021/om060350f.
^Siegel, Jay S.; Baldridge, Kim K.; Linden, Anthony; Dorta, Reto. d8Rhodium and Iridium Complexes of Corannulene. Journal of the American Chemical Society (American Chemical Society (ACS)). 2006, 128 (33): 10644–10645. ISSN 0002-7863. doi:10.1021/ja062110x.
^Bandera, D., Baldridge, K. K., Linden, A., Dorta, R. and Siegel, J. S. (2011), Stereoselective Coordination of C5-Symmetric Corannulene Derivatives with an Enantiomerically Pure [RhI(nbd*)] Metal Complex. Angewandte Chemie International Edition, 50: 865–867. doi:10.1002/anie.201006877