2006
DOI: 10.1002/ange.200503406
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Molecular Architecture towards Helical Double‐Stranded Polymers

Abstract: Nahe am Original: Ein DNA‐ähnliches doppelsträngiges Polymer wurde durch Ringöffnungsmetathesepolymerisation eines Bisnorbornens mit starrem Ferrocen‐Spacer synthetisiert. Das Polymer bildet Helices (siehe Bild), Supercoil‐ und Leitermotive, wie durch Rastertunnelmikroskopie nachgewiesen wurde.

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Cited by 26 publications
(26 citation statements)
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“…Polymer 13 represents the first unsymmetrical double‐stranded polymer in which the two constituent strands are complementary to each other and linked by the ferrocene units. Unlike 2 ,8 only ladderlike structures were observed by STM for 13 , and neither helical nor supercoiled structures were observed in the STM images. The relationship between the structure of the double‐stranded polymer and the solid‐state morphology remains unclear at this stage.…”
Section: Methodsmentioning
confidence: 83%
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“…Polymer 13 represents the first unsymmetrical double‐stranded polymer in which the two constituent strands are complementary to each other and linked by the ferrocene units. Unlike 2 ,8 only ladderlike structures were observed by STM for 13 , and neither helical nor supercoiled structures were observed in the STM images. The relationship between the structure of the double‐stranded polymer and the solid‐state morphology remains unclear at this stage.…”
Section: Methodsmentioning
confidence: 83%
“…(1)]. 8 The structure of 2 was unambiguously proved by chemical hydrolysis, spectroscopic means, and STM images. It is noteworthy that the linker between two norbornene moieties in 2 is derived from 4‐aminobenzyl ester and ferrocene dicarboxylate.…”
Section: Methodsmentioning
confidence: 95%
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“…[1][2][3] Although a large number of singlestranded helical polymers and oligomers have been reported, [2][3][4][5][6][7][8][9][10][11][12] examples of double-stranded helical polymers and oligomers remain relatively scarce. 2,3,8,9,[13][14][15][16][17][18][19][20][21][22] We have recently reported on the rational design and synthesis of a series of complementary double-stranded helical oligomers [23][24][25][26][27][28] with an optical activity that consists of a crescent-shaped m-terphenyl-based backbone containing amidine and carboxylic acid groups. In our design, the formation of the intertwined duplex is driven by the formation of an amidiniumcarboxylate salt bridge, and the helicity of the duplexes can be readily controlled by the introduction of chiral substituents on the nitrogen atoms of the amidine residues.…”
Section: Introductionmentioning
confidence: 99%