1,8-Bis(hexamethyltriaminophosphazenyl)naphthalene, HMPN: A Superbasic Bisphosphazene “Proton Sponge”
- 20 October 2005
- journal article
- research article
- Published by American Chemical Society (ACS) in Journal of the American Chemical Society
- Vol. 127 (45) , 15738-15743
- https://doi.org/10.1021/ja052647v
Abstract
It is shown that a combination of Schwesinger's phosphazene base concept and the idea of the disubstituted 1,8-naphthalene spacer, first introduced by Alder in paradigmatic 1,8-bis(dimethylamino)naphthalene (DMAN), yields a new superbase, HMPN, which represents the up to date most basic representative of this class of “proton sponges”, as evidenced by the theoretically estimated proton affinity PA = 274 kcal/mol and the measured pKBH+ (MeCN) 29.9 ± 0.2. HMPN is by nearly 12 orders of magnitude more basic than Alder's classical 1,8-bis(dimethylamino)naphthalene (DMAN). The title compound, HMPN, is prepared and fully characterized. The spatial structure of HMPN and its conjugate acid is determined by X-ray technique and theoretical DFT calculations. It is found that monoprotonated HMPN has an unsymmetrical intramolecular hydrogen bridge (IHB). This cooperative proton chelating effect renders the bisphosphazene more basic than Schwesinger's set of “monodentate” P1 phosphazene bases. The density functional calculations are in good accordance with the experimental results, providing some complementary information. They conclusively show that the high basicity of HMPN is a consequence of the high energy content of the base in its initial neutral state and the intramolecular hydrogen bonding in the resulting conjugate acid with contributions to proton affinity of 14.1 and 9.5 kcal/mol, respectively.Keywords
This publication has 39 references indexed in Scilit:
- Basicity of exceedingly strong non-ionic organic bases in acetonitrile —Verkade's superbase and some related phosphazenesNew Journal of Chemistry, 2004
- Polynitrogen strong bases as immobilized catalystsReactive and Functional Polymers, 2001
- Organically modified hexagonal mesoporous silicasGreen Chemistry, 1999
- 1,8‐Bis(diphenylamino)‐ and 1,8‐Bis(methylphenylamino)naphthalene: Molecular Structure and Dynamic BehaviorEuropean Journal of Inorganic Chemistry, 1992
- Peralkylierte Polyaminophosphazene ‐extrem starke neutrale StickstoffbasenAngewandte Chemie, 1987
- Chino[7,8‐h]chinolin, ein „Protonenschwamm”︁ neuen TypsAngewandte Chemie, 1987
- The structures of 1,8-dimorpholinonaphthalene and 1,8-dipiperidinonaphthaleneActa Crystallographica Section B: Structural Science, Crystal Engineering and Materials, 1982
- Base-catalyzed proton transfer from an intramolecularly hydrogen-bonded naphthylammonium ion in 70% dimethyl sulfoxide-water (v/v)Journal of the American Chemical Society, 1978
- New route to 2-vinylaziridines and an unusual intramolecular analog of the SN2' reaction leading to aziridine ring formationThe Journal of Organic Chemistry, 1974
- Slow proton transfer involving amino-groupsJournal of the Chemical Society, Chemical Communications, 1973