科研成果

2009
Xu M, Xu K, Contreras R, Milojevic M, Shen T, Koybasi O, Wu YQ, Wallace RM, Ye PD, Ieee. New Insight into Fermi-Level Unpinning on GaAs: Impact of Different Surface Orientations.; 2009 pp. 809-+. 访问链接
Chen PR, Nishida S, Poor CB, Cheng A, Bae T, Kuechenmeister L, Dunman PM, Missiakas D, He C. A new oxidative sensing and regulation pathway mediated by the MgrA homologue SarZ in Staphylococcus aureus. Molecular Microbiology [Internet]. 2009;(1):198-211. 访问链接
Ran Y, Wang F, Zhai H, Vishwanath A, Lee D-H. Nodal spin density wave and band topology of the FeAs-based materials. Physical Review B - Condensed Matter and Materials Physics. 2009;(1).
Li Z-Y, Xie Z-W, Chen T, Ouyang Q. Noise effect in metabolic networks. Chinese Physics B. 2009;(12):5544-5551.
Karasik BS, Pereverzev SV, Olaya D, Wei J, Gershenson ME, Sergeev AV. Noise measurements in hot-electron titanium nanobolometers. IEEE Transactions on Applied Superconductivity. 2009;(3):532-535.
Yi C, Yang C-G, He C. A non-heme iron-mediated chemical demethylation in DNA and RNA. Accounts of chemical research [Internet]. 2009;(4):530-541. 访问链接
Yi C, Yang C-G, He C. A non-heme iron-mediated chemical demethylation in DNA and RNA. Accounts of Chemical Research. 2009;(4):519-529.
Duan S, Wan L, Fu WJ, Pan H, Ding Q, Chen C, Han P, Zhu X, Du L, Liu H, et al. Nonlinear cooperation of p53-ING1-induced bax expression and protein S-nitrosylation in GSNO-induced thymocyte apoptosis: A quantitative approach with cross-platform validation. Apoptosis [Internet]. 2009;(2):236-245. 访问链接
Ning T, Gao P, Wang W, Lu H, Fu W, Zhou Y, Zhang D, Bai X, Wang E, Yang G. Nonlinear optical properties of composite films consisting of multi-armed CdS nanorods and ZnO. Optical Materials. 2009;(6):931-935.
Zhang X, Ma S, Zhang Y, Zhang L, Gao W. Nonlocal Edge-Directed Interpolation, in Advances in Multimedia Information Processing - PCM 2009, 10th Pacific Rim Conference on Multimedia, Bangkok, Thailand, December 15-18, 2009 Proceedings.; 2009:1197–1207. 访问链接
Liang L, Chen J, Ma S, Zhao D, Gao W. A no-reference perceptual blur metric using histogram of gradient profile sharpness, in Proceedings of the International Conference on Image Processing, ICIP 2009, 7-10 November 2009, Cairo, Egypt.; 2009:4369–4372. 访问链接
Zhu X, Lai L. A novel method for enzyme design. Journal of Computational Chemistry [Internet]. 2009;(2):256-267. 访问链接
Zhang XY, Chen DC, Xiu MH, Wang F, Qi LY, Sun HQ, Chen S, He SC, Wu GY, Haile CN, et al. The novel oxidative stress marker thioredoxin is increased in first-episode schizophrenic patients. Schizophrenia Research [Internet]. 2009;(2-3):151-157. 访问链接
Liu Y*, Kong S, Li Y, Zeng H. Novel technology for sewage sludge utilization: Preparation of amino acids chelated trace elements (AACTE) fertilizer. Journal of Hazardous Materials. 2009;171:1159 - 1167.
Lu HY, Wang C, Chen GL, Kim C-J, Liu JS, Ni GQ, Li RX, Xu ZZ. Nuclear fusion from Coulomb explosions of deuterated methane clusters subjected to ultraintense femtosecond laser pulses. Chinese Physics B. 2009;18:537-541.Abstract
This paper reports that Coulomb explosions taken place in the experiment of heteronuclear deuterated methane clusters ((CD4)2) in a gas jet subjected to intense femtosecond laser pulses (170mJ, 70fs) have led to table-top laser driven DD nuclear fusion. The clusters produced in supersonic expansion had an average size of about 5nm in radius and the laser intensity used was 3×1017W/cm2.The measured maximum and average energies of deuterons produced in the laser--cluster interaction were 60 and 13.5keV, respectively. From DD collisions of energetic deuterons, a yield of 2.5(±0.4)×104 fusion neutrons of 2.45MeV per shot was realized, giving rise to a neutron production efficiency of about 1.5×105 per joule of incident laser pulse energy. Theoretical calculations were performed and a fairly good agreement of the calculated neutron yield with that obtained from the present experiment was found.
Chen YQ, Kulasegaram S. Numerical modelling of fracture of particulate composites using SPH method. Computational Materials Science. 2009;47:60-70.Abstract
Simplicity of mesh generation and robustness against mesh entanglement during large deformations are key attractive features of particle based methods. These features can be exploited in number of engineering problems where traditional techniques suffer due to aforementioned limitations. Numerical modelling of particulate composites is one of such ideal engineering applications where particle based methods can be effectively used due to their simplicity and robustness. Complicated geometrical configurations of particulate composites obtained from techniques such as scanning electron microscopy (SEM) can be easily converted to particle based mesh without loosing much information. This enables more accurate analysis of the chosen composite materials. Therefore, a smooth particle hydrodynamics (SPH) based numerical technique is developed here to investigate the mechanical properties and evolution of debonding process in particulate composites. To perform the numerical study, a Lagrangian corrected SPH (CSPH) method is presented together with an appropriate numerical model for treating material interface discontinuity within the particulate composites. The material interface discontinuity is enforced using an innovative method which combines penalty formulation with a bilinear interface cohesive model for SPH method. The proposed SPH methodology is used in a number of numerical examples involving composite materials and related interface problems. The effect of penalty value on the interface model and of the smoothing length of the SPH method are also analysed during these simulations. The results illustrate the effectiveness, robustness and potential of the developed methodology. It is concluded that the proposed numerical techniques can be easily and effectively applied to simulate multi-phase composites with various interface conditions and, can provide useful information regarding the inherent mechanism of damage evolution and fracture of particulate or fibre reinforced composites. (C) 2009 Elsevier B.V. All rights reserved.
Chen Y, Kulasegaram S. Numerical modelling of fracture of particulate composites using SPH method. Computational Materials ScienceComputational Materials ScienceComputational Materials Science. 2009;47:60-70.Abstract
Simplicity of mesh generation and robustness against mesh entanglement during large deformations are key attractive features of particle based methods. These features can be exploited in number of engineering problems where traditional techniques suffer due to aforementioned limitations. Numerical modelling of particulate composites is one of such ideal engineering applications where particle based methods can be effectively used due to their simplicity and robustness. Complicated geometrical configurations of particulate composites obtained from techniques such as scanning electron microscopy (SEM) can be easily converted to particle based mesh without loosing much information. This enables more accurate analysis of the chosen composite materials. Therefore, a smooth particle hydrodynamics (SPH) based numerical technique is developed here to investigate the mechanical properties and evolution of debonding process in particulate composites. To perform the numerical study, a Lagrangian corrected SPH (CSPH) method is presented together with an appropriate numerical model for treating material interface discontinuity within the particulate composites. The material interface discontinuity is enforced using an innovative method which combines penalty formulation with a bilinear interface cohesive model for SPH method. The proposed SPH methodology is used in a number of numerical examples involving composite materials and related interface problems. The effect of penalty value on the interface model and of the smoothing length of the SPH method are also analysed during these simulations. The results illustrate the effectiveness, robustness and potential of the developed methodology. It is concluded that the proposed numerical techniques can be easily and effectively applied to simulate multi-phase composites with various interface conditions and, can provide useful information regarding the inherent mechanism of damage evolution and fracture of particulate or fibre reinforced composites. (C) 2009 Elsevier B.V. All rights reserved.
Jiang H, Wang L, Sun Q-F, Xie XC. Numerical study of the topological Anderson insulator in HgTe/CdTe quantum wells. Physical Review B - Condensed Matter and Materials Physics. 2009;(16).
Hu Y, Liu Y, Li W, Gao M, Liang X, Li Q, Peng L-M*. Observation of a 2D Electron Gas and the Tuning of the Electrical Conductance of ZnO Nanowires by Controllable Surface Band-Bending. Advanced Functional Materials. 2009;19:2380–2387.
Hu Y, Liu Y, Li W, Gao M, Liang X, Li Q, Peng L-M*. Observation of a 2D Electron Gas and the Tuning of the Electrical Conductance of ZnO Nanowires by Controllable Surface Band-Bending. Advanced Functional Materials. 2009;19:2380–2387.

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