28π Non‐Fused Hexaphyrin: Synthesis, Protonation Triggered Möbius Aromaticity and Structural Properties

Author:

Dash Syamasrit1,Ghosh Arindam2ORCID,Bandyopadhyay Suritra3,Kalita Pankaj3,Vishwakarma Rampal3,Srinivasan A.3ORCID,Suresh Cherumuttathu H.4ORCID,Chandrashekar Tavarekere K.3ORCID

Affiliation:

1. Univ Rennes CNRS ISCR (Institut des Sciences Chimiques de Rennes), UMR 6226 Rennes 35000 France

2. School of Advanced Sciences and Languages VIT Bhopal University, Kothrikalan Sehore Madhya Pradesh 466114 India

3. School of Chemical Sciences National Institute of Science Education and Research (NISER), HBNI Bhubaneswar 752050 Odisha India

4. Inorganic and theoretical chemistry section Chemical Science and Technology Division CSIR – National Institute of Interdisciplinary Science and Technology Trivandrum 695019 Kerala India

Abstract

AbstractSynthesis of core‐modified 28π non‐fused hexaphyrin is reported. The optical and 1H NMR spectral analysis reveals the non‐aromatic nature of the macrocycle in its freebase form at 298 K. However, the non‐aromatic nature of the macrocycle remains unaltered upon lowering the temperature. The structural elucidations for the freebase macrocycle also justify the non‐aromaticity of the freebase 8, where the thiophene units of the 1,2 diphenyl 1,2 dithienyl ethene moiety is deviated maximum from the overall macrocyclic framework. Protonation on the imino pyrrolic nitrogens results in single–crystal X‐ray structures of 8 which show essential distortion in macrocyclic framework needed for the effective π‐electron delocalization, attaining Möbius aromaticity. The Nucleus Independent Chemical Shift (NICS) values for the freebase and protonated macrocycles are −2.0 ppm and −5.6 ppm. The Anisotropy Induced Current density shows the clockwise delocalization of current density vectors. Overall, the spectral, structural and theoretical analysis suggests nonaromatic in freebase and Möbius aromatic nature of the protonated hexaphyrin.

Funder

National Institute of Science Education and Research

Publisher

Wiley

Subject

Organic Chemistry,Physical and Theoretical Chemistry

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