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Dive into the research topics where Luo Xingfang is active.

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Featured researches published by Luo Xingfang.


Chinese Physics B | 2015

Strain distributions of confined Au/Ag and Ag/Au nanoparticles

Huang Hong-Hua; Zhang Ying; Liu Xiao-Shan; Luo Xingfang; Yuan Cailei; Ye Shuangli

The strain distributions of Au/Ag and Ag/Au nanoparticles confined in the Al2O3 matrix with different core sizes are investigated by using the finite element method, respectively. The simulation results clearly indicate that the compressive strains exerted on the Au/Ag and Ag/Au nanoparticles can be induced by the Al2O3 matrix. Moreover, it can be found that the strain gradient existing in a Au/Ag nanoparticle is much larger than that in a Ag/Au nanoparticle, which could be due to the larger Youngs modulus of Au than that of Ag. With the core size increasing, the strain gradient existing in the Au/Ag nanoparticle becomes larger, while the strain gradient existing in the Ag/Au nanoparticle keeps constant. These different strain distributions may have significant influences on the structures and morphologies of the Au/Ag and Ag/Au nanoparticles, leading to the different physical properties for potential applications.


Chinese Physics B | 2015

Influence of strain distribution on the morphology evolution of a Ge/GeO2 core/shell nanoparticle confined in ultrathin Al2O3 thin film by surface oxidation*

Zhang Ying; Huang Hong-Hua; Liu Xiao-Shan; Luo Xingfang; Yuan Cailei; Ye Shuangli

The influence of strain distribution on morphology evolution of Ge/GeO2 core/shell nanoparticle confined in ultrathin Al2O3 thin film by surface oxidation is investigated. A finite-element simulation is performed to simulate the morphology evolution of the confined Ge/GeO2 core/shell nanoparticle under the influence of the local strain distribution. It indicates that the resultant oxidation-related morphology of Ge/GeO2 core/shell nanoparticle confined in ultrathin film is strongly dependent on the local strain distribution. On the other hand, the strain gradients applied on the confined GeO2 shell can be modified by the formation of polycrystalline GeO2 shell, which has potential application in tailoring the microstructure and morphology evolution of the Ge/GeO2 core/shell nanoparticle.


RSC Advances (Web) | 2017

水素不動態化による閉じ込められたAuナノ粒子の歪調整と光ルミネセンス【Powered by NICT】

Yuan Cailei; Mei Yaxing; Yu Ting; Yang Yong; li Qinliang; Hong Aijun; Xu Keng; Luo Xingfang; He Jun; Lei Wen


Archive | 2017

CMOS gas sensor with gas-sensitive layer made of Ga2O3

Luo Xingfang; Yuan Cailei; Yu Ting


Archive | 2017

Forming method for CMOS gas sensor with SnO2 gas sensitive layer

Yu Ting; Yuan Cailei; Luo Xingfang


Archive | 2017

CMOS (Complementary Metal Oxide Semiconductor) gas sensor with material of gas sensitive layer being Nb2O5

Luo Xingfang; Yuan Cailei; Yu Ting


Archive | 2017

Formation method of nanomaterial-based sensor

Luo Xingfang; Yuan Cailei; Yi Qiang; Yu Ting


Archive | 2017

CMOS gas sensor

Yu Ting; Yuan Cailei; Luo Xingfang


Archive | 2017

Method for detecting gas based on sensor made of nano material

Luo Xingfang; Yuan Cailei; Yi Qiang; Yu Ting


Archive | 2017

Formation method of gas sensor compatible with CMOS process

Yuan Cailei; Yu Ting; Luo Xingfang

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Yuan Cailei

Jiangxi Normal University

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Huang Hong-Hua

Jiangxi Normal University

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Liu Xiao-Shan

Jiangxi Normal University

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Zhang Ying

Jiangxi Normal University

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