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| 1 | DESIGN AND FABRICATION OF Si/SiGe PMOSFETs显示文摘Based on theoretical analysis and computer-aided simulation, optimized design principles for Si/SiGe PMOSFET are given in this paper, which include choice of gate materials,determination of germanium percentage and profile in SiGe channel, optimization of thickness of dioxide and silicon cap layer, and adjustment of threshold voltage. In the light of these principles,a SiGe PMOSFET is designed and fabricated successfully. Measurement indicates that the SiGe PMOSFET's (L=2μm) transconductance is 45 mS/mm (300K) and 92mS/mm (77K), while that is 33 mS/mm (300K) and 39mS/mm (77K) in Si PMOSFET with the same structure. | Yang Peifeng Li Jingchun Yu Qi Wang Xiangzhan Yang Mohua (Dept. of Microelectronic Science and Eng., UEST of China, Chengdu 610054)He Lin Li Kaicheng Tan KaizhouLiu Daoguang Zhang Jing Yi Qiang Fan Zerui(National Key Laboratory of Analog IC’s, Chongqing 400060) | 2002 | Journal of Electronics(China)2002,19,1: | 1 |
| 2 | Anti-inflammatory effects of phospholipid transfer protein (PLTP) deficiency in mice显示文摘 | Axel Schlitt Jin Liu Daoguang Yan Mary Mondragon-Escorpizo Allen J. Norin Xian-Cheng Jiang | 2004 | BBA - Molecular and Cell Biology of Lipids2004,,2: | 1 |
| 3 | A combination of RAFT and “click” chemistry techniques to synthesizepolymeric europium complexes with selective fluorescence emission 显示文摘 | Li Daoguang Zhu Jian Cheng Zhenping | 2009 | Reactive and Functional Polymers2009,69,4: | 1 |
| 4 | AMPKα2 Deletion Causes Aberrant Expression and Activation of NAD(P)H Oxidase and Consequent Endothelial Dysfunction In Vivo: Role of 26S Proteasomes显示文摘 | Shuangxi Wang Miao Zhang Bin Liang Jian Xu Zhonglin Xie Chao Liu Benoit Viollet Daoguang Yan Ming-Hui Zou | 2010 | Circulation Research2010,,6: | 1 |
| 5 | Change of retinal nerve fiber layer thickness in patients with nonarteritic inflammatory anterior ischemic optic neuropathy显示文摘In this study, 16 patients (19 eyes) with nonarteritic anterior ischemic optic neuropathy in the acute stage (within 4 weeks) and resolving stage (after 12 weeks) were diagnosed by a series of complete ophthalmic examinations, including fundus examination, optical coherence tomography and fluorescein fundus angiography, and visual field defects were measured with standard automated perimetry. The contralateral uninvolved eyes were used as controls. The retinal nerve fiber layer thickness was determined by optical coherence tomography which showed that the mean retinal nerve fiber layer thickness and the retinal nerve fiber layer thickness from temporal, superior, nasal and inferior quadrants were significantly higher for all measurements in the acute stage than the corresponding normal values. In comparison, the retinal nerve fiber layer thickness from each optic disc quadrant was found to be significantly lower when measured at the resolving stages, than in the control group. Statistical analysis on the correlation between optic disc nerve fiber layer thickness and visual defects demonstrated a positive correlation in the acute stage and a negative correlation in the resolving stage. Our experimental findings indicate that optical coherence tomography is a useful diagnostic method for nonarteritic anterior ischemic optic neuropathy and can be used to evaluate the effect of treatment. | Tingting Liu Hongsheng Bi Xingrong Wang Guimin Wang Haiyan Li Hui Wu Yi Qu Ying Wen Chenyang Cong Daoguang Wang | 2012 | Neural Regeneration Research2012,7,35: | 1 |
| 6 | UVB irradiation-induced dysregulation of plasma membrane calcium ATPase1 and intracellular calcium homeostasis in human lens epithelial cells显示文摘 | Qiuxin Wu Dadong Guo Hongsheng Bi Daoguang Wang Yuxiang Du | 2013 | Molecular and Cellular Biochemistry (-)2013,,1: | 1 |
| 7 | Pumpkin-like MoP-MoS_(2)@Aspergillus niger spore-derived N-doped carbon heterostructure for enhanced potassium storage显示文摘Biomass-derived carbon materials are widely applied in the energy storage and conversion fields due to their rich sources,low price and environmental friendliness.Herein,a unique pumpkin-like MoPMoS_(2)@Aspergillus niger spore-derived N-doped carbon(SNC)composite has been prepared via a simple hydrothermal and subsequent phosphorization process.Interestingly,the resulting MoP-MoS_(2)@SNC well inherits the pristine morphology of spore carbon,similar to the natural pumpkin,with hollow interiors and uneven protrusions on the surface.The special structure allows it to have sufficient space to fully contact the electrolyte and greatly reduces the ion transport distance.The theory calculations further demonstrate that the formed MoP-MoS_(2)heterostructure can enhance the adsorption of K ions and electronic couplings.With these unique advantages,the MoP-MoS_(2)@SNC anode for potassium storage shows a high reversible capability of 286.2 mAh g&(-1) at 100 mA g^(-1) after 100 cycles and superior rate performance.The enhanced electrochemical performance is mainly related to the unique pumpkin-like morphology of SNC and the construction of MoP-MoS_(2)heterostructure,as well as their perfect coupling.This study provides a feasible design idea for developing green,low-cost,and high-performance electrode materials for next-generation energy storage. | Daoguang Sun Cheng Tang Hui Cheng Weilan Xu Aijun Du Haijiao Zhang | 2022 | Journal of Energy Chemistry2022,31,9: | 0 |
| 8 | Recent Progress on Asymmetric Carbon- and Silica-Based Nanomaterials: From Synthetic Strategies to Their Applications显示文摘Carbon-and silica-based nanomaterials possess a set of merits including large surface area,good structural stability,diversified morphology,adjustable structure,and biocompatibility.These outstanding features make them widely applied in different fields.However,limited by the surface free energy effect,the current studies mainly focus on the symmetric structures,such as nanospheres,nanoflowers,nanowires,nanosheets,and core-shell structured composites.By comparison,the asymmetric structure with ingenious adjustability not only exhibits a larger effective surface area accompanied with more active sites,but also enables each component to work independently or corporately to harness their own merits,thus showing the unusual performances in some specific applications.The current review mainly focuses on the recent progress of design principles and synthesis methods of asymmetric carbon-and silica-based nanomaterials,and their applications in energy storage,catalysis,and biomedicine.Particularly,we provide some deep insights into their unique advantages in related fields from the perspective of materials’structure-performance relationship.Furthermore,the challenges and development prospects on the synthesis and applications of asymmetric carbon-and silica-based nanomaterials are also presented and highlighted. | Haitao Li Liang Chen Xiaomin Li Daoguang Sun Haijiao Zhang | 2022 | Nano-Micro Letters2022,14,3: | 0 |