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Showing 1–6 of 6 results
Advanced filters: Author: Nikhil Tiwale Clear advanced filters
  • DNA is a versatile molecular tool to program the assembly of organized three-dimensional nanostructures with precisely incorporated inorganic and biomolecular nanoscale components. This study reports an approach for growing 3D DNA-programmable frameworks on arbitrarily patterned silicon wafers and metal oxide surfaces.

    • Feiyue Teng
    • Honghu Zhang
    • Oleg Gang
    ResearchOpen Access
    Nature Communications
    Volume: 16, P: 1-13
  • The study of the inherent charge transport behaviour of 3D lead halide perovskite is challenging, owing to entanglement with ionic migration effects and dipolar disorder instabilities. Here, the authors circumvented both challenges and found that ion migration is much suppressed in mixed metal perovskite compositions relative to pure-Pb counterparts.

    • Satyaprasad P. Senanayak
    • Krishanu Dey
    • Henning Sirringhaus
    Research
    Nature Materials
    Volume: 22, P: 216-224
  • Self-assembly of block-copolymers yields nanoscale structures in a facile way, but the diversity of structures is limited. Here, the authors demonstrate how block copolymer layering can be used to access new non-equilibrium morphologies.

    • Sebastian T. Russell
    • Suwon Bae
    • Kevin G. Yager
    ResearchOpen Access
    Nature Communications
    Volume: 13, P: 1-11
  • The origin of large mobility modulation in ultrathin oxide transistors, promising for their high on-off ratio, remains mostly unknown. Here, a 106 gate-induced mobility modulation in 3.5 nm-thick TiOx transistors is explained by a high density of tail states, mediating variable range hopping of carriers.

    • Nikhil Tiwale
    • Ashwanth Subramanian
    • Chang-Yong Nam
    ResearchOpen Access
    Communications Materials
    Volume: 1, P: 1-8