Saturday, May 07, 2011

A Simple Route for the Synthesis of Morphology-Controlled and SERS-Active Ag Dendrites with Near-Infrared Absorption

A Simple Route for the Synthesis of Morphology-Controlled and SERS-Active Ag Dendrites with Near-Infrared Absorption: "
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The Journal of Physical Chemistry C
DOI: 10.1021/jp110532c

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Strong Enhancement of Solar Cell Efficiency Due to Quantum Dots with Built-In Charge

Strong Enhancement of Solar Cell Efficiency Due to Quantum Dots with Built-In Charge: "
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Nano Letters
DOI: 10.1021/nl200543v

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Spectroscopic and Microscopic Investigation of Gold Nanoparticle Formation: Ligand and Temperature Effects on Rate and Particle Size

Spectroscopic and Microscopic Investigation of Gold Nanoparticle Formation: Ligand and Temperature Effects on Rate and Particle Size: "
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Journal of the American Chemical Society
DOI: 10.1021/ja107934h

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Precise Subnanometer Plasmonic Junctions for SERS within Gold Nanoparticle Assemblies Using Cucurbit[n]uril “Glue”

Precise Subnanometer Plasmonic Junctions for SERS within Gold Nanoparticle Assemblies Using Cucurbit[n]uril “Glue”: "
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ACS Nano
DOI: 10.1021/nn200250v

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A New and Facile Method To Prepare Uniform Hollow MnO/Functionalized mSiO2 Core/Shell Nanocomposites

A New and Facile Method To Prepare Uniform Hollow MnO/Functionalized mSiO2 Core/Shell Nanocomposites: "
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ACS Nano
DOI: 10.1021/nn200928r

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Wednesday, May 04, 2011

Tuesday, May 03, 2011

Thank you

I want to thank each and everyone one of you for making Nanochemistry so popular. At the time of this posting we are passing 7000+ page views. Recently I added advertisements to the page. This was a decision made to ensure that we can maintain our readers with the most up to date advances in literature. I will try to streamline the advertisements to meet the needs of our readers. Again thank you and I look forward to hearing from you.

Using 915 nm Laser Excited Tm3+/Er3+/Ho3+-Doped NaYbF4 Upconversion Nanoparticles for in Vitro and Deeper in Vivo Bioimaging without Overheating Irradiation

Using 915 nm Laser Excited Tm3+/Er3+/Ho3+-Doped NaYbF4 Upconversion Nanoparticles for in Vitro and Deeper in Vivo Bioimaging without Overheating Irradiation: "
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ACS Nano
DOI: 10.1021/nn200110j

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Fast Growth Synthesis of Silver Dendrite Crystals Assisted by Sulfate Ion and Its Application for Surface-Enhanced Raman Scattering

Fast Growth Synthesis of Silver Dendrite Crystals Assisted by Sulfate Ion and Its Application for Surface-Enhanced Raman Scattering: "
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The Journal of Physical Chemistry C
DOI: 10.1021/jp201484r

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Monday, May 02, 2011

Synthesis of Silver Nanorods by Low Energy Excitation of Spherical Plasmonic Seeds

Synthesis of Silver Nanorods by Low Energy Excitation of Spherical Plasmonic Seeds: "
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Nano Letters
DOI: 10.1021/nl2009789

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Photonic Crystal Fiber for Efficient Raman Scattering of CdTe Quantum Dots in Aqueous Solution

Photonic Crystal Fiber for Efficient Raman Scattering of CdTe Quantum Dots in Aqueous Solution: "
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ACS Nano
DOI: 10.1021/nn200157z

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Multistrata Nanoparticles: The Multistrata Nanoparticle: an FeOx/Au Core/Shell Enveloped in a Silica–Au Shell (Small 9/2011)

Multistrata Nanoparticles: The Multistrata Nanoparticle: an FeOx/Au Core/Shell Enveloped in a Silica–Au Shell (Small 9/2011): "Thumbnail image of graphical abstract
The frontispiece features the multistrata nanoparticle—a single-core, five-layered nanostructure. It combines tunable, dual-peak, UV–vis–NIR spectrum extinction characteristics; trimodal imaging contrast; a simple synthesis; and facile surface modification capabilities into a single <60-nm-diameter, multifunctional nanosphere that seeks to relieve current methodological limitations by coupling diagnostics and therapeutics into one single theranostic tool. The image shows a model of the interior, multilayered, metallodielectric structure, including a schematic of the fabrication protocol. For more information, please read the Communication “The Multistrata Nanoparticle: An FeOx/Au Core/Shell Enveloped in a Silica–Au Shell” by T. D. Giorgio and co-workers, beginning on page 1157.
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