Immobilisierung von platinierten und iodierten DNA‐Oligomeren an Kohlenstoff‐Nanoröhren
- 17 October 1997
- journal article
- zuschrift
- Published by Wiley in Angewandte Chemie
- Vol. 109 (20) , 2291-2294
- https://doi.org/10.1002/ange.19971092009
Abstract
Biotechnologie und Materialwissenschaftenvereint machen's möglich: die Immobilisierung von DNA an Kohlenstoff‐Nanoröhren. Aufgrund ihrer Markierung mit den Schweratomen Platin und Iod kann die Doppelstrang‐DNA durch hochauflösende Transmissionselektronenmikroskopie sichtbar gemacht werden (im Bild rechts markiert der Pfeil die DNA‐Schicht). magnified imageKeywords
This publication has 18 references indexed in Scilit:
- Positively Charged Surface Induces Discontinuous Transition for the High Order Structure in Duplex DNABiochemical and Biophysical Research Communications, 1995
- Platination Pathways for Reactions of Cisplatin with GG Single‐Stranded and Double‐Stranded DecanucleotidesAngewandte Chemie International Edition in English, 1995
- Platinierungsmechanismen für Reaktionen von Cisplatin mit GG‐Einzelstrang‐ und ‐Doppelstrang‐DecanucleotidenAngewandte Chemie, 1995
- Enzyme‐modified microelectrodes for in vivo neurochemical measurementsElectroanalysis, 1995
- The potential and limitations of neutrons, electrons and X-rays for atomic resolution microscopy of unstained biological moleculesQuarterly Reviews of Biophysics, 1995
- Immobilization of small proteins in carbon nanotubes: high-resolution transmission electron microscopy study and catalytic activityJournal of the Chemical Society, Chemical Communications, 1995
- Filling carbon nanotubes with small palladium metal crystallites: the effect of surface acid groupsJournal of the Chemical Society, Chemical Communications, 1995
- Covalent immobilization of DNA onto glassy carbon electrodesElectroanalysis, 1992
- Large-scale synthesis of carbon nanotubesNature, 1992
- Molecular mechanics analysis of the stereochemical factors influencing monofunctional and bifunctional binding of cis-diamminedichloroplatinum(II) to adenine and guanine nucleobases in the sequences d(GpApGpG).cntdot.d(CpCpTpC) and d(GpGpApG).cntdot.d(CpTpCpC) of A- and B-DNAInorganic Chemistry, 1991