Publication | Closed Access
1D nanocrystals with precisely controlled dimensions, compositions, and architectures
367
Citations
37
References
2016
Year
Materials ScienceOne-dimensional MaterialEngineeringBottom-up SynthesisDiverse SpectrumNanomaterialsNanotechnologyApplied PhysicsCylindrical Unimolecular NanoreactorsNanostructure SynthesisChemistryPlain NanorodsNanocrystalline MaterialNanoarchitectonicsNanostructures
The ability to synthesize a diverse spectrum of one-dimensional (1D) nanocrystals presents an enticing prospect for exploring nanoscale size- and shape-dependent properties. Here we report a general strategy to craft a variety of plain nanorods, core-shell nanorods, and nanotubes with precisely controlled dimensions and compositions by capitalizing on functional bottlebrush-like block copolymers with well-defined structures and narrow molecular weight distributions as nanoreactors. These cylindrical unimolecular nanoreactors enable a high degree of control over the size, shape, architecture, surface chemistry, and properties of 1D nanocrystals. We demonstrate the synthesis of metallic, ferroelectric, upconversion, semiconducting, and thermoelectric 1D nanocrystals, among others, as well as combinations thereof.
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