نتایج جستجو برای: semiconductor nanocrystals

تعداد نتایج: 70216  

2010
Haiyan Ou Yiyu Ou Chuan Liu Rolf W. Berg Karsten Rottwitt

Different sizes of Ge nanocrystals embedded in a SiO2 matrix were formed by PECVD, and analyzed by TEM. Size effect of Ge nanocystals was demonstrated by Raman spectroscopy after excluding the thermal effect. OCIS codes: (160.4236) nanomaterial; (160.6000) semiconductor material;

2012
Dave Norris

Doping is extremely important for controlling the electronic conductivity of bulk semiconductors. However, very few examples exist where impurities that have been incorporated into colloidal semiconductor nanocrystals affect their electronic properties. Here we will discuss the challenges in this area as well as recent progress. In particular, we will describe an approach to lightly dope semico...

Journal: :The European Physical Journal B 2013

2014
Dmitry N. Dirin Sébastien Dreyfuss Maryna I. Bodnarchuk Georgian Nedelcu Paris Papagiorgis Grigorios Itskos Maksym V. Kovalenko

Lead halide perovskites (CH3NH3PbX3, where X = I, Br) and other metal halide complexes (MX(n), where M = Pb, Cd, In, Zn, Fe, Bi, Sb) have been studied as inorganic capping ligands for colloidal nanocrystals. We present the methodology for the surface functionalization via ligand-exchange reactions and the effect on the optical properties of IV-VI, II-VI, and III-V semiconductor nanocrystals. In...

2013
Xiao-feng Lu Xiu-jie Bian Zhi-cheng Li Dan-ming Chao Ce Wang

Here, we demonstrated a novel method to decorate Cu₉S₅ nanocrystals on polyaniline (PANI) nanowires using the dopant of mercaptoacetic acid (MAA) in the PANI matrix as the sulfur source under a hydrothermal reaction. TEM images showed that Cu₉S₅ nanocrystals with a size in the range of 5-20 nm were uniformly formed on the surface of PANI nanowires. Significantly, the as-prepared PANI/Cu₉S₅ comp...

2013
Julie Goffard Davy Gérard Patrice Miska Anne-Laure Baudrion Régis Deturche Jérôme Plain

Silicon nanocrystals offer huge advantages compared to other semi-conductor quantum dots as they are made from an abundant, non-toxic material and are compatible with silicon devices. Besides, among a wealth of extraordinary properties ranging from catalysis to nanomedicine, metal nanoparticles are known to increase the radiative emission rate of semiconductor quantum dots. Here, we use gold na...

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