Incorporation of sulfonate dyes into hydrogen-bonded networks†
Abstract
The reaction of [C(NH2)3]Cl with ![[double bond, length as m-dash]](https://www.rsc.org/images/entities/char_e001.gif) NC6H4NMe2], leads to formation of [C(NH2)3][O3SC6H4N
NC6H4NMe2], leads to formation of [C(NH2)3][O3SC6H4N![[double bond, length as m-dash]](https://www.rsc.org/images/entities/char_e001.gif) NC6H4NMe2] 				1 in which the sulfonate
NC6H4NMe2] 				1 in which the sulfonate ![[double bond, length as m-dash]](https://www.rsc.org/images/entities/char_e001.gif) NC6H4NMe2]·MeOH 2·MeOH, [C(NH2)2(NHEt)][O3SC6H4N
NC6H4NMe2]·MeOH 2·MeOH, [C(NH2)2(NHEt)][O3SC6H4N![[double bond, length as m-dash]](https://www.rsc.org/images/entities/char_e001.gif) NC6H4NMe2] 				3 and [C(NH2)2(NMe2)][O3SC6H4N
NC6H4NMe2] 				3 and [C(NH2)2(NMe2)][O3SC6H4N![[double bond, length as m-dash]](https://www.rsc.org/images/entities/char_e001.gif) NC6H4NMe2] 				4. Although substitution disrupts formation of the GS sheets, the gross structures of 2–4 all have pseudo-bilayer structures, with similar gross features to 1. Compound 1 reacts with HCl in solution to generate the zwitterionic compound O3SC6H4NH
NC6H4NMe2] 				4. Although substitution disrupts formation of the GS sheets, the gross structures of 2–4 all have pseudo-bilayer structures, with similar gross features to 1. Compound 1 reacts with HCl in solution to generate the zwitterionic compound O3SC6H4NH![[double bond, length as m-dash]](https://www.rsc.org/images/entities/char_e001.gif) NC6H4NMe25, but solid samples of 1 react reversibly with HCl gas to give the HCl adduct 1a. This interconversion has been studied by
NC6H4NMe25, but solid samples of 1 react reversibly with HCl gas to give the HCl adduct 1a. This interconversion has been studied by 
- This article is part of the themed collection: New Trends in Crystal Engineering
 
                



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