Chemistry Reference
In-Depth Information
References
1. Morita Y, Nishida S (2010) Phenalenyls, cyclopentadienyls, and other carbon-centered
radicals. In: Hicks RG (ed) Stable radicals: fundamentals and applied aspects of odd-electron
compounds. Wiley, Chichester
2. Clar E (1972) The aromatic sextet. Wiley-VCH, London
3. Lambert C (2011) Towards polycyclic aromatic hydrocarbons with a singlet open-shell
ground state. Angew Chem Int Ed 50:1756-1758
4. Morita Y, Suzuki S, Sato K, Takui T (2011) Synthetic organic spin chemistry for structurally
well-defined open-shell graphene fragments. Nat Chem 3:197-204
5. Reid DH (1958) Stable
p
-electron systems and new aromatic structures. Tetrahedron
3:339-352
6. Nakasuji K, Yamaguchi M, Murata I, Yamaguchi K, Fueno T, Ohya-Nishiguchi H, Sugano T,
Kinoshita M (1989) Synthesis and characterization of phenalenyl cations, radicals, and anions
having donor and acceptor substituents: three redox states of modified odd alternant systems.
J Am Chem Soc 111:9265-9267
7. Goto K, Kubo T, Yamamoto K, Nakasuji K, Sato K, Shiomi D, Takui T, Kubota M,
Kobayashi T, Yakusi K, Ouyang J (1999) A stable neutral hydrocarbon radical: synthesis,
crystal structure, and physical properties of 2,5,8-tri- tert -butyl-phenalenyl. J Am Chem Soc
121:1619-1620
8. L¨ JM, Rosokha SV, Kochi JK (2003) Stable (long-bonded) dimers via the quantitative self-
association of different cationic, anionic, and uncharged
p
-radicals: structures, energetics,
and optical transitions. J Am Chem Soc 125:12161-12171
9. Small D, Zaitsev V, Jung Y, Rosokha SV, Head-Gordon M, Kochi JK (2004) Intermolecular
p -to- p bonding between stacked aromatic dyads. Experimental and theoretical binding
energies and near-IR optical transitions for phenalenyl radical/radical versus radical/cation
dimerizations. J Am Chem Soc 126:13850-13858
10. Zaitsev V, Rosokha SV, Head-Gordon M, Kochi JK (2006) Steric modulations in the
reversible dimerizations of phenalenyl radicals via unusually weak carbon-centered p - and
s -bonds. J Org Chem 71:520-526
11. Suzuki S, Morita Y, Fukui K, Sato K, Shiomi D, Takui T, Nakasuji K (2006) Aromaticity on
the pancake-bonded dimer of neutral phenalenyl radical as studied by MS and NMR
spectroscopies and NICS analysis. J Am Chem Soc 128:2530-2531
12. Haddon RC, Hirani AM, Kroloff NJ, Marshall JH (1983) 1,3,4,9-Tetramethoxyphenalenyl
system. J Org Chem 48:2115-2117
13. Pagni RM, Pagni RM (1989) Substituent effects on the stability of carbodications. Tetrahe-
dron Lett 30:2727-2730
14. Pagni RM, Pagni RM, Haddon RC, Chichester SV (1990) The role of substituents on
carbodication stability. J Org Chem 55:5595-5601
15. Kaplan ML, Haddon RC, Hirani AM, Schilling FC, Marshall JH (1981) Phenaleno[1,9- cd ]
[1,2,6]thiadiazinium cation. J Org Chem 46:675-678
16. Haddon RC, Chichester SV, Stein SM, Marshall JH, Mujsce AM (1987) Perchloro- 7H -
cycloprop[ a ]acenaphthylene and the perchlorophenalenyl system. J Org Chem 52:711-712
17. Koutentis PA, Chen Y, Cao Y, Best TP, Itkis ME, Beer L, Oakley RT, Cordes AW, Brock CP,
Haddon RC (2001) Perchlorophenalenyl radical. J Am Chem Soc 123:3864-3871
18. Haddon RC, Wudl F, Kaplan ML, Marshall JH, Cais RE, Bramwell FB (1978) 1,9-
Dithiophenalenyl system. J Am Chem Soc 100:7629-7633
19. Beer L, Mandal SK, Reed RW, Oakley RT, Tham FS, Donnadieu B, Haddon RC (2007) The
first electronically stabilized phenalenyl radical: effect of substituents on solution chemistry
and solid-state structure. Cryst Growth Des 7:802-809
20. Beer L, Reed RW, Robertson CM, Oakley RT, Tham FS, Haddon RC (2008) Tetrathio-
phenalenyl radical and its disulfide-bridged dimer. Org Lett 10:3121-3123
Search WWH ::




Custom Search