Abstract:
Provided is a peptide including X2SX1AAX2X3P (SEQ ID NO. 1), X2X2PX3X2AX3P (SEQ ID NO. 2), SX1AAX2X3P (SEQ ID NO. 3), or X2PX3X2AX3P (SEQ ID NO. 4), which bind to graphitic materials or volatile organic compounds.
Abstract translation:提供了结合石墨材料或挥发性有机物的X2SX1AAX2X3P(SEQ ID NO.1),X2X2PX3X2AX3P(SEQ ID NO.2),SX1AAX2X3P(SEQ ID NO.3)或X2PX3X2AX3P(SEQ ID NO.4)的肽, 化合物。
Abstract:
The present disclosure provides a peptide including one or more amino acid sequence selected from a group consisting of SEQ ID NO 1 and SEQ ID NO 2 and binding specifically to a graphitic material, a phage including same, and a graphitic material including a graphitic surface on which the peptide or the phage is arranged.
Abstract translation:本公开内容提供了包含一个或多个选自SEQ ID NO 1和SEQ ID NO 2的氨基酸序列并且特异性结合石墨材料的肽,包含其的噬菌体和包含石墨表面的石墨材料 其中肽或噬菌体被排列。
Abstract:
Provided is an electronic sheet including a graphitic material and a phage which displays a peptide having a binding ability to the graphitic material on its coat protein or a fragment thereof.
Abstract:
Disclosed is a transistor including a topological insulator. The transistor includes: a substrate; a topological insulator provided on the substrate; a drain electrode provided on the topological insulator; a source electrode separated from the drain electrode, provided on the topological insulator, and including a ferromagnetic substance; a tunnel junction layer provided on the source electrode; and a gate electrode provided on the tunnel junction layer. A spin direction of the topological insulator is fixed by a current flowing to a surface thereof, and a spin direction of the source electrode is changed to a predetermined direction by a voltage applied to the gate electrode.
Abstract:
In accordance with the present disclosure, a hybrid electronic sheet which exhibits superior electrical property and allows biomaterial functionalization and flexible device patterning may be provided by binding a graphitic material in colloidal state to a biomaterial capable of binding thereto specifically and nondestructively. Since the electronic sheet is an electronic sheet wherein a biomaterial and an electrical material (graphitic material) are hybridized, it exhibits good compatibility with biomaterials and can be further functionalized with, for example, an enzyme that selectively reacts with a biochemical substance. Accordingly, an electrical material and a chemical or biological material may be effectively nanostructurized and it can be realized as a multi-functional, high-performance electronic sheet.