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65S. Bernès, M. R. Pastrana, E. H. Sánchez and R. G. Pérez.
1,5-Diaminonaphthalene, Acta Cryst. (2004). E60, o45-o47Â Â Â Â Dmitry E. Korshin, Ruslan R. Kashapov, Leisan I. Murtazina, Rezeda K. Mukhitova, Sergey V. Kharlamov, Shamil K. Latypov, Irina S. Ryzhkina, Albina Y. Ziganshina and Alexandr I. Konovalov.
Self-assembly of an aminoalkylated resorcinarene in aqueous media: host–guest properties, New J. Chem., 2009, 33, 2397. Chi-Hau Sue, Subhadeep Basu, Albert C. Fahrenbach, Alexander K. Shveyd, Sanjeev K. Dey, Youssry Y. Botros and J. Fraser Stoddart.
Enabling tetracationic cyclophane production by trading templates, Chem. Sci., 2010, 1, 119. Fay Dodds, Felipe García, Richard A. Kowenicki, Mary McPartlin, Alexander Steiner and Dominic S. Wright.
Synthesis and structure of the calixarene-like phosph(iii)azane macrocycle [{P(µ-NtBu)}{1,5-(NH)CH}], Chem. Commun., 2005, 0, 3733. Kazuyuki Takehira, Yoshiki Sugawara, Susumu Kowase and Seiji Tobita.
A picosecond time-resolved study on prototropic reactions of electronically excited 1,5- and 1,8-diaminonaphthalenes in aqueous solution, Photochem. Photobiol. Sci., 2005, 4, 287. Distribution study of atorvastatin and its metabolites in rat tissues using combined information from UHPLC/MS and MALDI-Orbitrap-MS imaging, Analytical and Bioanalytical Chemistry Solution structure and equilibrium of new calix[4]resorcinarene complexesu2014prototype of molecular machines. NMR data, Journal of Inclusion Phenomena and Macrocyclic Chemistry Conductivity Modifications of Graphene by Electron Donative Organic Molecules, Journal of Electronic Materials Synthesis of (E,E)-Nn 1,Nn 5-disubstituted benzylidenenaphthalene-1,5-diamine, Russian Journal of General Chemistry