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DNA origami mediated electrically connected metal–semiconductor junctions 被引量:2
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作者 Basu R.Aryal Dulashani R.Ranasinghe +4 位作者 Tyler R.Westover Diana G.Calvopia robert c.davis John N.Harb Adam T.Woolley 《Nano Research》 SCIE EI CAS CSCD 2020年第5期1419-1426,共8页
DNA-based nanofabrication of inorganic nanostructures has potential application in electronics,catalysis,and plasmonics.Previous DNA metallization has generated conductive DNA-assembled nanostructures;however,the use ... DNA-based nanofabrication of inorganic nanostructures has potential application in electronics,catalysis,and plasmonics.Previous DNA metallization has generated conductive DNA-assembled nanostructures;however,the use of semiconductors and the development of well-connected nanoscale metal-semiconductor junctions on DNA nanostructures are still at an early stage.Herein,we report the first fabrication of multiple electrically connected metal-semiconductor junctions on individual DNA origami by location-specific binding of gold and tellurium nanorods.Nanorod attachment to DNA origami was via DNA hybridization for Au and by electrostatic interaction for Te.Electroless gold plating was used to create nanoscale metal-semiconductor interfaces by filling the gaps between Au and Te nanorods.Two-point electrical characterization indicated that the Au-Te-Au junctions were electrically connected,with current-voltage properties consistent with a Schottky junction.DNA-based nanofabrication of metal-semiconductor junctions opens up potential opportunities in nanoelectronics,demonstrating the power of this bottom-up approach. 展开更多
关键词 current-voltage measurement DNA nanofabrication electroless plating gold nanorods nanoelectronics tellurium nanorods
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Erratum to: DNA origami mediated electrically connected metal-semiconductor junctions
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作者 Basu RAryal Dulashani R.Ranasinghe +4 位作者 Tyler R.Westover Diana G.Calvopiña robert c.davis John N.Harb Adam T.Woolley 《Nano Research》 SCIE EI CSCD 2021年第11期4363-4363,共1页
Erratum to Nano Research 2020,13(5):1419-1426 https://doi.Org/l 0.1007/s 12274-020-2672-5 Figure 8(f)was unfortunately mistakenly used.The two duplicate graphs were among several examples of the type of data the authi... Erratum to Nano Research 2020,13(5):1419-1426 https://doi.Org/l 0.1007/s 12274-020-2672-5 Figure 8(f)was unfortunately mistakenly used.The two duplicate graphs were among several examples of the type of data the authirs obtained in those experiments,so this error did not affect any of the conclusions from the published paper. 展开更多
关键词 FIGURE CONNECTED conclusions
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