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HomeAuthorsChen Y.

Authors: Chen Y.

Size dependent photoluminescence characteristics of GaN nanoparticles

Chen Y., Kang K.S., Jyoti N., Kim J., Inha University, KR
Various size of GaN nanoparticles have been fabricated with sol-gel method using Ga(NO3)3 as a presusor, HNO3 as a solvent, NH3OH as a pH adjusting agent, and citric acid as a chelating agent. After adding [...]

An Analytic Terahertz Signal Detection Model of Silicon-based Nanowire Gated Field Effect Transistor

He F., Chen Y., Mu X., Lou H., Zhang L., Song Y., SZPKU, CN
In this paper, an analytical terahertz (THz) signal detection model of Silicon-based nanowire MOSFET (NWFET) is proposed. Beginning from the fundamental hydrodynamic transport equations, the expressions of the velocity spatial distribution and inversion charge transport [...]

Synthesis and Characterization of Silver Nanoparticle Rings Embedded in Glass

Chen Y., Jaakola J., Ge Y., Säynätjoki A., Tervonen A., Hannula S-P, Honkanen S., Helsinki University of Technology, FI
Ion exchange technique with photolithography-patterned metal mask is used to form silver nanoparticle patterns embedded in glass. Optical transmission measurement is performed to characterize the optical properties of silver nanoparticles. Atomic force microscopy (AFM) of [...]

A Portable Raman Sensor for the Rapid Identification of the Olive Oil

Qi X., Zhang X., Zou M., Chen Y., Ye J., Chinese Academy of Inspection and Quarantine, CN
The adulteration of the olive oil with lower-priced oils and its distinction of different classifications are serious problems in the olive oil market, a fast on-site screening method is needed to be developed. In addition [...]

Surface Potential versus Voltage Equation from Accumulation to Strong Region for Undoped Symmetric Double-Gate MOSFETs and Its Continuous Solution

He J., Chen Y., Li B., Wei Y., Chan M., Peking University, CN
Surface potential is one key variable in DG MOSFET compact modeling. A complete surface potential versus voltage equation and its continuous solution from the accumulation to strong inversion region are presented in this paper for [...]

Diode Parameter Extraction by a Linear Cofactor Difference Operation Method

Ma C., Li B., Liu F., Chen Y., Zhang L., Zhang X., Liu F., Feng J., He J., Zhang L., Zhang X., Peking University, CN
The direct extraction of the key static parameters of a general diode by the new method named Linear Cofactor Difference Operator (LCDO) method has been carried out in this paper. From the developed LCDO method, [...]

A Portable Raman Sensor for the Rapid Identification of the Olive Oil

Qi X., Zhang X., Zou M., Chen Y., Ye J., Chinese Academy of Inspection and Quarantine, CN
The adulteration of the olive oil with lower-priced oils and its distinction of different classifications are serious problems in the olive oil market, a fast on-site screening method is needed to be developed. In addition [...]

An Approximate Explicit Solution to General Diode Equation

He J., Tao Y., Yang C., Feng M., Li B., Bian W., Chen Y., Peking University, CN
an approximate explicit solution for a normalized diode has been developed in this paper. The accuracy of the diode current calculation and its derivative prediction has also been verified compared with the result of the [...]

A Carrier-Based Analytic Model for Undoped Ultra-Thin-Body Silicon-on-Insulator (UTB-SOI) MOSFETs

He J., Bian W., Tao Y., Li B., Chen Y., Peking University, CN
A carrier-based analytical model for undoped (lightly doped) UTB-SOI MOSFETs is derived by solving the Poisson equation coupled to the Pao-Sah current formulation. It is also shown that the predicted I-V characteristics are in complete [...]

Fate, Transport, and Toxicity of Nanomaterials in Drinking Water

Zhang Y., Koeneman B.A., Chen Y., Westerhoff P., Capco D.G., Crittenden J., Arizona State University, US
The objective of this research is to evaluate the potential risk of human exposure to nanomaterials in drinking water by examining three issues: 1) characteristics and stability of nanomaterials in the water environment; 2) removal [...]

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