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Volumn 5, Issue 21, 2009, Pages 2418-2423

Micrometer-sized DNA-Single-Fluorophore-DNA supramolecule: synthesis and single-molecule characterization

Author keywords

DNA; Fluorescence microscopy; Hybridization; Scanning force microscopy; Single molecule studies

Indexed keywords

AGAROSE GEL ELECTROPHORESIS; COUPLING REACTION; DNA FRAGMENT; FLUORESCENCE IMAGING; HYBRIDIZATION; METALLIZATIONS; MICROMETER LENGTHS; OLIGODEOXYNUCLEOTIDES; SCANNING FORCE MICROSCOPY; SINGLE MOLECULE LEVEL; SINGLE-MOLECULE CHARACTERIZATION; SINGLE-MOLECULE ELECTRONICS; SINGLE-MOLECULE FLUORESCENCE MICROSCOPY; SINGLE-MOLECULE STUDIES; STRUCTURAL CHARACTERIZATION; SUPRAMOLECULES; TRIBLOCKS; UV EXCITATION;

EID: 70449348853     PISSN: 16136810     EISSN: 16136829     Source Type: Journal    
DOI: 10.1002/smll.200900494     Document Type: Article
Times cited : (12)

References (75)
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    • The low yield of the DPD triblock structure may be due to the steric hindrance from the long dsDNA. The priming (i.e, hybridization) ability of the remaining 12-mer oligomer of 12-mer ODN-PTCDI-2.7 kbp dsDNA was significantly reduced by increased steric hindrance from the attached 2.7 kbp dsDNA after 12-mer ODN-2.7 kbp dsDNA was formed. We obtained primarily the monofunctionalized product, 12-mer ODN-PTCDI-2.7 kbp dsDNA.
    • The low yield of the DPD triblock structure may be due to the steric hindrance from the long dsDNA. The priming (i.e, hybridization) ability of the remaining 12-mer oligomer of 12-mer ODN-PTCDI-2.7 kbp dsDNA was significantly reduced by increased steric hindrance from the attached 2.7 kbp dsDNA after 12-mer ODN-2.7 kbp dsDNA was formed. We obtained primarily the monofunctionalized product, 12-mer ODN-PTCDI-2.7 kbp dsDNA.


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.