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Biomedical subjects

Christoph E Nebel

Publications and source records attributed to Christoph E Nebel.

3 recordsLinked to original sources

Geometric properties of covalently bonded DNA on single-crystalline diamond.

Diamond is a promising candidate for bioapplications. Properties of hybridized DNA arrays on single-crystalline diamond are studied on a microscopic level by atomic force microscopy (AFM) in buffer solutions. Compact DNA layers in a thickness of 76 A are resolved by optimizing phase and height contrast in AFM. The height shows some long-range (30 nm) undulations of +/-5 A due to tip and DNA interactions. The axis of double helix DNA is oriented at about 36 degrees with respect to the diamond surface. DNA molecules can be removed by contact-mode AFM with forces >45 nN, indicating stronger DNA bonding than on gold substrates.

DNA↗

Insulator-metal transition of intrinsic diamond.

Insulator-metal transitions are translations characterized by a sudden change in electron transport properties from localized to itinerant behavior of electrons. In most cases, it is detected in strongly disordered semiconductors as a function of temperature with statistically distributed donors and/or acceptors. Here, we show that reversible insulator-metal transitions take place in H-terminated intrinsic (undoped) single crystalline diamond, if immersed into redox-electrolyte solutions at room temperature. The change is generated by valence-band electrons of diamond, which tunnel into the redox-electrolyte, where they occupy empty electronic sites. We applied cyclic voltammetry experiments to characterize the insulator-metal transition in combination with different redox couples. The experiments show that transfer doping accounts for the experimentally detected phenomena, and that intrinsic diamond is a promising candidate for chemical sensing in a variety of applications.

Journal Article↗