A series of polyaniline (PANI) oligomers was constructed from monomer units covalently linked to duplex DNA through N-(2-aminoethyl) groups bonded through cytosines. DNA oligomers containing the aniline monomers were treated with horseradish peroxidase (HRP) and H2O2 under conditions known to cause polymerization of aniline. No change in the absorption spectrum of the DNA was observed for samples containing fewer than four contiguous aniline groups. However, for oligomers containing four, five, or six aniline units, treatment with HRP and H2O2 led to the appearance of absorption features characteristic of the conducting proton doped emeraldine oxidation state of PANI. Molecular modeling shows that the DNA is distorted in the region of the...
DNA consists of four nucleobases adenine (A), cytosine (C), guanine (G) and thymine (T), and hydroge...
Biomolecular hybrids of a conducting polymer [poly(o-methoxy aniline) (POMA)] and RNA are prepared a...
The predictability of DNA self-assembly is exploited in many nanotechnological approaches. Inspired ...
In the field of inherently conducting polymers, polyaniline (Pani) has elicited tremendous interest ...
Polyaniline nanowires were grown using DNA as a template for possible use as interconnects in molecu...
© 2019 Kazan Federal University. All Rights Reserved. The associates of conjugated polymers with bio...
doi:10.1088/0957-4484/15/11/026 DNA-templated polyaniline nanowires and networks are synthesized usi...
Self-assembled DNA was used as a template for the formation of conjoined polyaniline-DNA oligomers b...
The DNA-poly(o-methoxyaniline) (POMA) hybrid is prepared by mixing aqueous solutions of POMA [emeral...
The green synthesis of highly conductive polyaniline by using two biological macromolecules, i.e lac...
A poly(o-methoxyaniline) (POMA)/DNA [weight fraction of DNA (WDNA) = 0.45] hybrid was prepared by mi...
Nanometer-scale arrays of conducting polymers were prepared on scaffolds of self-assembling DNA modu...
The reduction of chloroauric acid using aniline adsorbed on DNA produces highly branched dendritic g...
Biomolecular hybrids of poly(o-methoxyaniline) (POMA) and deoxyribonucleic acid (DNA) are prepared b...
Detection of specific RNA or DNA molecules by hybridization to “probe” nucleic acids via complementa...
DNA consists of four nucleobases adenine (A), cytosine (C), guanine (G) and thymine (T), and hydroge...
Biomolecular hybrids of a conducting polymer [poly(o-methoxy aniline) (POMA)] and RNA are prepared a...
The predictability of DNA self-assembly is exploited in many nanotechnological approaches. Inspired ...
In the field of inherently conducting polymers, polyaniline (Pani) has elicited tremendous interest ...
Polyaniline nanowires were grown using DNA as a template for possible use as interconnects in molecu...
© 2019 Kazan Federal University. All Rights Reserved. The associates of conjugated polymers with bio...
doi:10.1088/0957-4484/15/11/026 DNA-templated polyaniline nanowires and networks are synthesized usi...
Self-assembled DNA was used as a template for the formation of conjoined polyaniline-DNA oligomers b...
The DNA-poly(o-methoxyaniline) (POMA) hybrid is prepared by mixing aqueous solutions of POMA [emeral...
The green synthesis of highly conductive polyaniline by using two biological macromolecules, i.e lac...
A poly(o-methoxyaniline) (POMA)/DNA [weight fraction of DNA (WDNA) = 0.45] hybrid was prepared by mi...
Nanometer-scale arrays of conducting polymers were prepared on scaffolds of self-assembling DNA modu...
The reduction of chloroauric acid using aniline adsorbed on DNA produces highly branched dendritic g...
Biomolecular hybrids of poly(o-methoxyaniline) (POMA) and deoxyribonucleic acid (DNA) are prepared b...
Detection of specific RNA or DNA molecules by hybridization to “probe” nucleic acids via complementa...
DNA consists of four nucleobases adenine (A), cytosine (C), guanine (G) and thymine (T), and hydroge...
Biomolecular hybrids of a conducting polymer [poly(o-methoxy aniline) (POMA)] and RNA are prepared a...
The predictability of DNA self-assembly is exploited in many nanotechnological approaches. Inspired ...