CONTROLLED GROWTH OF TETRAPOD-BRANCHED INORGANIC NANOCRYSTALS PDF

Controlled growth of tetrapod-branched inorganic nanocrystals. Liberato Manna, Delia J. Milliron, Andreas Meisel, Erik C. Scher, A. Paul. For the case of CdTe, we designed a high yield, reproducible synthesis of soluble , tetrapod-shaped nanocrystals through which we can independently control. Andreas Meisel, A. Paul Alivisatos, Liberato Manna | Nature Materials | | sci- napse.

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GudiksenLincoln J. From This Paper Figures, tables, and topics from this paper. Architectural control of magnetic semiconductor nanocrystals.

Quantized growth of semiconductor nanoparticles, investigation of aggregation dynamics and the growth kinetics. By clicking accept or continuing to use the site, you agree ijorganic the terms outlined in our Privacy PolicyTerms of Serviceand Dataset License.

Controlled growth of tetrapod-branched inorganic nanocrystals.

Topics Discussed in This Paper. Adam Peng and 2 Estimated H-index: Rod Photoreceptors Alveolar rhabdomyosarcoma. Nanocrystalline Materials Nanostructured Materials. Xiaogang Peng 70 Estimated H-index: Colloidal crystals of monodisperse FePt nanoparticles grown by a three-layer technique of controlled oversaturation. Fabrication and characterization of the plate-shaped gamma-Fe2O3 nanocrystals.

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Controlled growth of tetrapod-branched inorganic nanocrystals. View in Source Cite this paper. Synthesis and optical properties of tetrapod-like zinc oxide nanorods.

Controlled growth of tetrapod-branched inorganic nanocrystals.

Synthesis of rod- twinrod- and tetrapod-shaped CdS nanocrystals using a highly oriented solvothermal recrystallization technique. References Publications referenced by tetrapos-branched paper. Nearly monodisperse and shape-controlled CdSe nanocrystals via alternative routes: Colloidal nanocrystals for electrochemical reduction reactions. Yonghong Ni 1 Estimated H-index: Assemblies of Polymer-Based Nanoscopic Objects.

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Nanotube Molecular Wires as Chemical Sensors. Optical gain and stimulated emission in nanocrystal quantum dots. Shevchenko 40 Estimated H-index: Tomonori Ito 18 Estimated H-index: Colloidal nanocrystals are promising candidates in these fields, due to their ease of fabrication and processibility. One-dimensional nanostructures tetrapdo-branched II-VI ternary alloys: Self-assembly of semiconductor nanocrystals into ordered superstructures.

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Nanotechnology Nanocrystal Materials science Tetrapod. Jing Kong 27 Estimated H-index: Skip to search form Skip to main content.

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Wen Jiang 9 Estimated H-index: Xiangfeng Duan 82 Estimated H-index: Electrochemical Growth of Nanostructured Materials. Adam Peng andXiaogang Peng. Indium phosphide nanowires as building blocks for nanoscale electronic and optoelectronic devices. Gudiksen 12 Estimated H-index: Growth of nanowire superlattice structures for nanoscale photonics and electronics Mark S.