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Dive into the research topics where Xiaoxin Wang is active.

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Featured researches published by Xiaoxin Wang.


Nanotechnology | 2006

Metal catalysis-free, direction-controlled planar growth of single-crystalline α-Si3N4 nanowires on Si(100) substrate

Xiaoxin Wang; Jifeng Liu; Buwen Cheng; Jinzhong Yu; Qiming Wang

Single-crystalline alpha-Si3N4 nanowires are controlled to grow perpendicular to the wet-etched trenches in the SiO0.94 film on the plane of the Si substrate without metal catalysis. A detailed characterization is carried out by scanning electron microscopy (SEM) and transmission electron microscopy (TEM). The photoluminescence at 600 nm from alpha-Si3N4 nanowires is attributed to the recombination at the defect state formed by the Si dangling bond N3 equivalent to Si-center dot. The growth mechanism is considered to be related to the catalysis and nitridation of SiO nanoclusters preferably re-deposited around the inner corner of the trenches, as well as faster Si diffusion along the slanting side walls of the trenches. This simple direction-controlled growth method is compatible with the CMOS process, and could facilitate the fabrication of alpha-Si3N4 nanoelectronic or nanophotonic devices on the Si platform.


international conference on group iv photonics | 2006

Photoluminescence Mechanism of Si Nanocrystals Embedded in SiO2 Matrix

Xiaoxin Wang; Buwen Cheng; Jinzhong Yu; Qiming Wang

The interface state recombination effect from the quantum confinement effect in PL signals from the SRO material system was studied. The results show that the larger the size of Si NCs, the more beneficial for the interface state recombination process to surpass the quantum confinement process, in support of Qins model


MRS Proceedings | 2004

Metal-free growth of Si/SiO2 nanowires by annealing SiOx (x < 2) films deposited by PECVD

Xiaoxin Wang; Jianguo Zhang; Qiming Wang

A new metal catalysis-free method of fabricating Si or SiO2 nanowires (NWs) compatible with Si CMOS technology was proposed by annealing SiOx (x 200nm, and SiO molecules from thin SiO, film decomposition inducing the NW growth in films < 100nm. An effective preliminary method to control NW growth direction was also demonstrated by etching trenches in SiOx films followed by annealing.


Physical Review B | 2005

Origin and evolution of photoluminescence from Si nanocrystals embedded in a SiO2 matrix

Xiaoxin Wang; Jianguo Zhang; Lu Ding; Buwen Cheng; Weikun Ge; Jinzhong Yu; Qiming Wang


Archive | 2008

Method for making silicon base band irradiance and non-linear electric-light material

Jianguo Zhang; Xiaoxin Wang; Wuchang Ding; Buwen Cheng; Jinzhong Yu; Qiming Wang


Archive | 2008

Silicon base lanthanon adulterated EL part

Jianguo Zhang; Xiaoxin Wang; Buwen Cheng; Jinzhong Yu; Qiming Wang


Archive | 2008

Method of producing rare earth complex ion injected luminescence material

Jianguo Zhang; Xiaoxin Wang; Buwen Cheng; Jinzhong Yu; Qiming Wang


Archive | 2008

Doping method for silicon based rear earth doped luminescent material

Jianguo Zhang; Xiaoxin Wang; Buwen Cheng; Jinzhong Yu; Qiming Wang


Archive | 2007

Method for raising radiation of silicone based crystal thin film by use of process of plasma

Xiaoxin Wang; Jianguo Zhang; Qiming Wang


Archive | 2009

Transverse electric-injection luminescent device of indirect gap semiconductor material controlled by phonon

Jianguo Zhang; Xiaoxin Wang; Buwen Cheng; Jinzhong Yu; Qiming Wang

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Qiming Wang

Chinese Academy of Sciences

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Buwen Cheng

Chinese Academy of Sciences

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Jianguo Zhang

Chinese Academy of Sciences

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Jinzhong Yu

Chinese Academy of Sciences

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Wuchang Ding

Chinese Academy of Sciences

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Lu Ding

Hong Kong University of Science and Technology

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Weikun Ge

Hong Kong University of Science and Technology

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Jifeng Liu

Massachusetts Institute of Technology

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