260
S. Matsumoto and J. Hwang
Matsuoka M (2000) Multifunctional dye materials from new dicyanopyrazine chromophores. In:
Freeman HS, Peters AT (eds) Colorants for non-textile applications. Elsevier Science, pp 339–381
McKinnon JJ, Fabbiani FPA, Spackman MA (2007) Comparison of polymorphic molecular crystal
structures through hirshfeld surface analysis. Cryst Growth Des 7:755–769
Mizuguchi J, Rihs G, Karfunkel HR (1995) Solid-state spectra of titanylphthalocyanine as viewed
from molecular distorsion. J Phys Chem 99:16217–16227
Mizuguchi J, Sasaki T, Tojo K (2002) Refinement of the crystal structure of 5,7,12,14-tetrahydro[2,3b]-quinolinoacridine (γ-form), C20H12N2O2, at 223K. Z. Kristallogr NCS 217:249–250
Nakai H, Shiro M, Ezumi K, Sakata S, Kubota T (1976) The crystal and molecular structures
of p-nitrobenzylidene-p-dimethylaminoaniline and p-Dimethylaminobenzylidene-p-nitroaniline.
Acta Crys B 32:1827–1833
Nakai H, Ezumi K, Shiro M (1981) The structures of polymorphs of N-(pdimethylaminobenzylidene)-p-nitroaniline. Acta Cryst B 37:193–197
Nangia A (2008) Conformational polymorphism in organic crystals. Acc Chem Res 41:595–604
Nishimura N, Senju T, Mizuguchi J (2006) 5,7,12,14-Tetra-hydro[2,3-b]quinolinoacridine (β form).
Acta Cryst E 62:4683–4685
Oka K, Okada O, Nukada K (1992) Study of the crystal structure of titanylphthalocyanine by
Rietveld analysis and intermolecular energy minimization method. Jpn J Appl Phys 31:2181–2184
Okada O, Oka K, Iijima M (1993) Study of the crystal structure of titanylphthalocyanine by Rietveld
analysis II. Jpn J Appl Phys 32:3556–3660
Paulus EF, Dietz E, Kroh A, Prokschy F (1989) In: 12th European crystallographic meeting collected
abstracts, vol 2, pp 23–24
Paulus EF, Leusen FJJ, Schmidt MU (2007) Crystal structures of quinacridones. CrystEngComm
9:131–143
Potts GD, Jones W, Bullock JF, Andrews SJ, Maginn SJ (1994) The crystal structure of quinacridone:
an archetypal pigment. J Chem Soc Chem Commun 2565–2566
Prakash A (1962) The crystal structure of 1,8-dihydroxy anthraquinone. Indian J Phys 36:654–656
Prakash A (1965) The crystal and molecular structure of chrisazin. Z Kristallogr 122:272–282
Price SL (2013) Why don’t we find more polymorphs? Acta Cryst B 69:313–328
Price SL (2014) Predicting crystal structures of organic compounds. Chem Soc Rev 43:2098–2111
Reilly AM et al (2016) Report on the sixth blind test of organic crystal structure prediction methods.
Acta Cryst B 72:439–459
Robertson JM (1935) An X-ray study of the structure of the phthalocyanines. Part I. The metal-free,
nickel, copper, and platinum compounds. J Chem Soc 615–621
Rohl AL, Moret M, Kaminsky W, Claborn K, McKinnon JJ, Kahr B (2008) Hirshfeld surfaces
identify inadequacies in computations of intermolecular interactions in crystals: pentamorphic
1,8-dihydroxyanthraquinone. Cryst Growth Des 8:4517–4525
SciFinder. The American Chemical Society. https://www.cas.org/products/scifinder
Shirai K, Yanagisawa A, Takahashi H, Fukunishi K, Matsuoka M (1998) Syntheses and fluorescent
properties of 2,5-diamino-3,6-dicyanopyrazine dyes. Dyes Pigm 39:49–68
Smith DL (1974) Structure of dyes and dye aggregates-evidence from crystal structure analysis.
Photo Sci Eng 18:309–322
Tahir MN, Shafiq Z, Shad HA, Rehman ZU, Karim A, Naseer MM (2015) Polymorphism in a
sulfamethoxazole derivative: coexistence of five polymorphs in methanol at room temperature.
Cryst Growth Des 15:4750–4755
Threlfal TL (1995) Analysis of organic polymorphs, a review. Analyst 120:2435–2460
The Cambridge Structural Database. The Cambridge Crystallographic Data Centre. https://www.
ccdc.cam.ac.uk/solutions/csd–system/components/csd/
Valdivia-Berroeta GA, Smith SJ, Michaelis DJ, Johnson JA (2017) (E)-N,N-dimethyl-4-(((4nitrophenyl)imino)methyl)aniline. CSD Communication
Watanabe K, Kinoshita A, Hirose N, Itami A (1990) A new charge generation material for organic
photoconductors: Y-form Titanylphthalocyanine. Konica Tech Rep 3:108–114
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