Herein, we present the synthesis of a thymine nucleobase appended ‘frustrated’ monomer, which exhibits self-association in DMSO solutions through the formation of hydrogen bonds. This self-association process has been explored in both competitive DMSO solutions and the solid state, using a combination of NMR and single crystal X-ray diffraction techniques. The self-associative equilibria within the solution state are balanced in such a way that the hydrogen bond donating (HBD) and accepting (HBA) thymine residue present within the monomeric structure is free to coordinate further guest species such as the complimentary DNA base adenine. The adenine simulants, 2-aminopyridine and 2,6-diaminopyridine have been used to explore the potential of...
The development of supramolecular synthons capable of driving hierarchical two-dimensional self-asse...
textHydrogen bonding is seen extensively in Nature. It is manifest in DNA/RNA nucleic acid (nucleob...
The area of supramolecular self-assembly has received significant interest in recent years and a key ...
<p>Herein, we present the synthesis of a thymine nucleobase-appended ‘frustrated’ monomer, which exh...
Herein, we report the synthesis of a novel amphiphilic salt containing a number of hydrogen bond don...
Here we present the synthesis of complementary (pseudo) nucleobase appended Supramolecular Self-asso...
Dynamic and reversible non‐covalent interactions endow synthetic systems and materials with smart ad...
The work described in this thesis focuses on understanding the solid state interactions of organic m...
Hydrogen bonding is one of the most useful interactions for the self-assembly of molecular subunits ...
This research made use of the IMSERC NMR, MS and PXRD facility at Northwestern University, which has...
Biology can achieve phenomenal information storage/processing capabilities from just four hydrogen b...
Herein, we present the synthesis of ten structurally related ‘frustrated’ amphiphiles, from which we...
Herein, we present a series of five tetrabutylammonium (TBA) sulfonate–urea amphiphilic salts. In so...
Nucleobases methylated at the glycosidic nitrogen atom achieve DNA-specific self-assembly upon heati...
The development of supramolecular synthons capable of driving hierarchical two-dimensional (2D) self...
The development of supramolecular synthons capable of driving hierarchical two-dimensional self-asse...
textHydrogen bonding is seen extensively in Nature. It is manifest in DNA/RNA nucleic acid (nucleob...
The area of supramolecular self-assembly has received significant interest in recent years and a key ...
<p>Herein, we present the synthesis of a thymine nucleobase-appended ‘frustrated’ monomer, which exh...
Herein, we report the synthesis of a novel amphiphilic salt containing a number of hydrogen bond don...
Here we present the synthesis of complementary (pseudo) nucleobase appended Supramolecular Self-asso...
Dynamic and reversible non‐covalent interactions endow synthetic systems and materials with smart ad...
The work described in this thesis focuses on understanding the solid state interactions of organic m...
Hydrogen bonding is one of the most useful interactions for the self-assembly of molecular subunits ...
This research made use of the IMSERC NMR, MS and PXRD facility at Northwestern University, which has...
Biology can achieve phenomenal information storage/processing capabilities from just four hydrogen b...
Herein, we present the synthesis of ten structurally related ‘frustrated’ amphiphiles, from which we...
Herein, we present a series of five tetrabutylammonium (TBA) sulfonate–urea amphiphilic salts. In so...
Nucleobases methylated at the glycosidic nitrogen atom achieve DNA-specific self-assembly upon heati...
The development of supramolecular synthons capable of driving hierarchical two-dimensional (2D) self...
The development of supramolecular synthons capable of driving hierarchical two-dimensional self-asse...
textHydrogen bonding is seen extensively in Nature. It is manifest in DNA/RNA nucleic acid (nucleob...
The area of supramolecular self-assembly has received significant interest in recent years and a key ...