Bioelectronic interfaces by spontaneously organized peptides on 2D atomic single layer materials

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作者
Yuhei Hayamizu
Christopher R. So
Sefa Dag
Tamon S. Page
David Starkebaum
Mehmet Sarikaya
机构
[1] GEMSEC,
[2] Genetically Engineered Materials Science and Engineering Center,undefined
[3] Materials Science and Engineering,undefined
[4] University of Washington,undefined
[5] Materials Science and Engineering,undefined
[6] Tokyo Institute of Technology,undefined
[7] PRESTO,undefined
[8] Japan Science and Technology Agency (JST),undefined
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Self-assembly of biological molecules on solid materials is central to the “bottom-up” approach to directly integrate biology with electronics. Inspired by biology, exquisite biomolecular nanoarchitectures have been formed on solid surfaces. We demonstrate that a combinatorially-selected dodecapeptide and its variants self-assemble into peptide nanowires on two-dimensional nanosheets, single-layer graphene and MoS2. The abrupt boundaries of nanowires create electronic junctions via spatial biomolecular doping of graphene and manifest themselves as a self-assembled electronic network. Furthermore, designed peptides form nanowires on single-layer MoS2 modifying both its electric conductivity and photoluminescence. The biomolecular doping of nanosheets defined by peptide nanostructures may represent the crucial first step in integrating biology with nano-electronics towards realizing fully self-assembled bionanoelectronic devices.
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