|
|
|
题名
|
作者
|
年代
|
出处
|
被引量
|
| 1 | The semantic model of manufacturing services显示文摘 | WANG Mingwei LI Shan ZHOU Jingtao | 2011 | Advanced Materials Re- search2011,216,: | 1 |
| 2 | A Novel Impro- ved Variable Step-Size Incremental-Resistance MPPT M- ethod for PV Systems 显示文摘 | Mei Qiang Shan Mingwei Liu Liying | 2011 | IEEE Transactions on Industrial Electronics2011,58,6: | 1 |
| 3 | A novel improved variable step-size incremental-resistance MPPT method for PV systems 显示文摘 | Mei Qiang Shan Mingwei Liu Liying | 2011 | IEEE Transactions on Industrial Electronics2011,58,6: | 1 |
| 4 | Bridging the structure gap between pellets in artificial dissolution media and in gastro-intestinal tract in rats显示文摘Changes in structure of oral solid dosage forms(OSDF) elementally determine the drug release and its therapeutic effects.In this research,synchrotron radiation X-ray micro-computed tomography was utilized to visualize the 3 D structure of enteric coated pellets recovered from the gastrointestinal tract of rats.The structures of pellets in solid state and in vitro compendium media were measured.Pellets in vivo underwent morphological and structural changes which differed significantly from those in vitro compendium media.Thus,optimizations of the dissolution media were performed to mimic the appropriate in vivo conditions by introducing pepsin and glass microspheres in media.The sphericity,pellet volume,pore volume and porosity of the in vivo esomeprazole magnesium pellets in stomach for2 h were recorded 0.47,1.55 × 10^(8)μm^(3),0.44 × 10^(8)μm^(3)and 27.6%,respectively.After adding pepsin and glass microspheres,the above parameters in vitro reached to 0.44,1.64 × 10^(8)μm^(3)0.38 × 10^(8)μm^(3)and 23.0%,respectively.Omeprazole magnesium pellets behaved similarly.The structural features of pellets between in vitro media and in vivo condition were bridged successfully in terms of 3 D structures to ensure better design,characterization and quality control of advanced OSDF. | Hongyu Sun Siyu He Li Wu Zeying Cao Xian Sun Mingwei Xu Shan Lu Mingdi Xu Baoming Ning Huimin Sun Tiqiao Xiao Peter York Xu Xu Xianzhen Yin Jiwen Zhang | 2022 | Acta Pharmaceutica Sinica B2022,12,1: | 1 |
| 5 | A novel improved variable step-size incremental-resistance MPPT method for PV systems显示文摘 | MEI Qiang SHAN Mingwei LIU Liying | 2011 | IEEE Transactions on Industrial Electronics2011,58,6: | 1 |
| 6 | Implicit Reading in Chinese Pure Alexia显示文摘 | Chunlei Shan Renjing Zhu Mingwei Xu | 2010 | Brain and Language2010,114,: | 1 |
| 7 | A novel improved variable step- size incremental- resistance MPPT method for PV systems 显示文摘 | Mei Qiang Shan Mingwei Liu Liying | 2011 | IEEE Transactions on Power Electronics2011,58,6: | 1 |
| 8 | A Novel Improved Variable Step-size Incremental-resistance MPPT Method for PV Systems显示文摘 | Mei Qiang Shan Mingwei Liu Liying | | 0,,06: | 1 |
| 9 | A novel improved variable step- size incremental- resistance MPPT method for PV systems 显示文摘 | Mei Qiang Shan Mingwei Liu Liying | 2011 | IEEE Transactions on Industrial Electronics2011,58,6: | 1 |
| 10 | A novel improved variable step-size incremental-resistance MPPT method for PV systems显示文摘 | Mei Qiang Shan Mingwei Liu Liying | | 0,,06: | 1 |
| 11 | A novel im- proved variable step-size incremental-resistance MPPT method for PV systems 显示文摘 | Mei Qiang Shan Mingwei Liu Liying | 2003 | Progress in Photovoltaics : Re- search and Applications2003,11,1: | 1 |
| 12 | A novel three-phase AC/DC converter without front-end filter based on adjustable triangular-wave PWM technique显示文摘 | Ji Yanchao Shan Mingwei | 1999 | IEEE Trans on Power Electronics1999,14,2: | 1 |
| 13 | A novel improved variable step-size incremental-resistance MPPT method for PV systems 显示文摘 | MEI Qiang SHAN Mingwei LIU Liying | 2011 | IEEE Transactions on Industrial Electronics2011,58,6: | 1 |
| 14 | A novel improved variable step-size incremental-resistance MPPT method for PV systems显示文摘 | Mei Qiang Shan Mingwei Liu Liying | 2011 | IEEE Transactions on Industrial Electronics2011,58,6: | 1 |
| 15 | A novel improved variable step-size incremental-resistance MPPT method for PV systems显示文摘 | Mei Qiang Shan Mingwei Liu Liying | 2011 | IEEE Transactions on Industrial Electronics2011,58,6: | 1 |
| 16 | China's policy framework for carbon capture,utilization and storage:Review,analysis,and outlook显示文摘Carbon capture,utilization,and storage(CCUS)is estimated to contribute substantial CO_(2)emission reduction to carbon neutrality in China.There is yet a large gap between such enormous demand and the current capacity,and thus a sound enabling environment with sufficient policy support is imperative for CCUS development.This study reviewed 59 CCUS-related policy documents issued by the Chinese government as of July 2022,and found that a supporting policy framework for CCUS is taking embryonic form in China.More than ten departments of the central government have involved CCUS in their policies,of which the State Council,the National Development and Reform Commission(NDRC),the Ministry of Science and Technology(MOST),and the Ministry of Ecological Environment(MEE)have given the greatest attention with different focuses.Specific policy terms are further analyzed following the method of content analysis and categorized into supply-,environment-and demand-type policies.The results indicate that supply-type policies are unbalanced in policy objectives,as policy terms on technology research and demonstration greatly outnumber those on other objectives,and the attention to weak links and industrial sectors is far from sufficient.Environment-type policies,especially legislations,standards,and incentives,are inadequate in pertinence and operability.Demand-type policies are absent in the current policy system but is essential to drive the demand for the CCUS technology in domestic and foreign markets.To meet the reduction demand of China's carbon neutral goal,policies need to be tailored according to needs of each specific technology and implemented in an orderly manner with well-balanced use on multiple objectives. | Qiao MA Shan WANG Yan FU Wenlong ZHOU Mingwei SHI Xueting PENG Haodong LV Weichen ZHAO Xian ZHANG | 2023 | Frontiers in Energy2023,17,3: | 1 |
| 17 | A novel improved variable step-size incremental-resistance MPPT method for PV systems显示文摘 | Mei Qiang Shan Mingwei Guerrero Josep M | 2011 | IEEE Transactions on Industrial Electronics2011,58,6: | 1 |
| 18 | Mapping the emergence of visual consciousness in the human brain via brain-wide intracranial electrophysiology显示文摘Consciousness lies at the heart of our existence and experience.To probe how perceptual consciousness emerges in the brain,we recorded brainwide intracranial electroencephalography signals from human patients while their perceptual consciousness was effectively manipulated using the continuous flash suppression paradigm.We observed substantial differences in brain activities when visual information gradually enters consciousness. | Liang Shan Hui Huang Zhiting Zhang Yuyin Wang Fei Gu Mingwei Lu Wen Zhou Yi Jiang Ji Dai | 2022 | The Innovation2022,3,3: | 0 |
| 19 | SUPERPLASTICITY IN LARGE-GRAINED Fe_3Al ALLOYS显示文摘SUPERPLASTICITYINLARGE-GRAINEDFe_3AlALLOYSLINDongliang(T.L.Lin),(SHANAidang,CHENMingweiShanghaiJiaotongUniversity,Shanghai200?.. | LIN Dongliang(T. L. Lin),(SHAN Aidang, CHEN Mingwei Shanghai Jiaotong University, Shanghai 200030, China) | 1995 | Acta Metallurgica Sinica(English Letters)1995,8,Z1: | 0 |