4.8 Article

Blueprinting macromolecular electronics

期刊

NATURE CHEMISTRY
卷 3, 期 6, 页码 431-436

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NATURE PUBLISHING GROUP
DOI: 10.1038/NCHEM.1043

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资金

  1. EC [MRTN-CT-2006-035810, MRTN-CT-2006-036040, PITN-GA-2009-238177, PITN-GA-2010-264694, 212311]
  2. NanoSci-E+ project SENSORS
  3. International Center for Frontier Research in Chemistry (FRC, Strasbourg)

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Recently, by mastering either top-down or bottom-up approaches, tailor-made macromolecular nano-objects with semiconducting properties have been fabricated. These engineered nanostructures for organic electronics are based on conjugated systems predominantly made up of sp(2)-hybridized carbon, such as graphene nanoribbons. Here, we describe developments in a selection of these nanofabrication techniques, which include graphene carving, stimulus-induced synthesis of conjugated polymers and surface-assisted synthesis. We also assess their potential to reproduce chemically and spatially precise molecular arrangements, that is, molecular blueprints. In a broad context, the engineering of a molecular blueprint represents the fabrication of an integrated all-organic macromolecular electronic circuit. In this Perspective, we suggest chemical routes, as well as convergent on-surface synthesis and microfabrication approaches, for the ultimate goal of bringing the field closer to technology.

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