Abstract
Maintaining the structural fidelity of DNA origami structures on substrates is a prerequisite for the successful fabrication of hybrid DNA origami/semiconductor-based biomedical sensor devices. Molybdenum disulfide (MoS2) is an ideal substrate for such future sensors due to its exceptional electrical, mechanical and structural properties. In this work, we performed the first investigations into the interaction of DNA origami with the MoS2 surface. In contrast to the structure-preserving interaction of DNA origami with mica, another atomically flat surface, it was observed that DNA origami structures rapidly lose their structural integrity upon interaction with MoS2. In a further series of studies, pyrene and 1-pyrenemethylamine, were evaluated as surface modifications which might mitigate this effect. While both species were found to form adsorption layers on MoS2 via physisorption, 1-pyrenemethylamineserves as a better protective agent and preserves the structures for significantly longer times. These findings will be beneficialfor the fabrication of future DNA origami/MoS2 hybrid electronic structures. © 2014 Zhang et al; licensee Beilstein-Institut.
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Zhang, X., Rahman, M., Neff, D., & Norton, M. L. (2014). DNA origami deposition on native and passivated molybdenum disulfide substrates. Beilstein Journal of Nanotechnology, 5(1), 501–506. https://doi.org/10.3762/bjnano.5.58
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