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12篇 您的检索式:作者名="Shi Shengwei"
    题名 作者 年代 出处 被引量
1Thiolactone copolymer donor gifts organic solar cells a 16.72% efficiency显示文摘Since 1995,bulk-heterojunction organic solar cells consisting of one or two organic donors and one or two organic acceptors have been fighting for high power conversion efficiencies(PCEs)and good stability[1].Until recent years,this next-generation photovoltaic technology starts to offer decent PCEs,shedding the light on commercialization,and attracting great attention again[2-14].Compared w让h the continuously emerging highperformance nonfullerene acceptors,high-performance donors are rare.Ji Xiong Ke Jin Yufan Jiang Jianqiang Qin Tan Wang Jinfeng Liu Qishi Liu Haili Peng Xiongfeng Li Anxin Sun Xianyi Meng Lixiu Zhang Ling Liu Wenting Li Zhimin Fang Xue Jia Zuo Xiao Yaqing Feng Xiaotao Zhang Kuan Sun Shangfeng Yang Shengwei Shi Liming Ding 2019Science Bulletin2019,64,21:17
2WheatOmics:A platform combining multiple omics data to accelerate functional genomics studies in wheat显示文摘Dear Editor,Mold-breaking progress in whole-genome sequencing and rapid accumulation of multi-omics data have revolutionized the research strategies of functional genomics in wheat(Wang et al.,2018).However,how to access these vast multi-omics data and to extract key information on genes of in-terest,is still challenging for most wet-lab or field wheat re-searchers who have little bioinformatic experiences and cannot access the expensive computational resources.Here,we pre-sent WheatOmics(http://gffzz513af15b15bc4712hnbpxxwqqokb66w5f.ffgz.tsg.suse.edu.cn/,previously designated as Triticeae Multi-omics Center,http://gffzz601e21d286504235hnbpxxwqqokb66w5f.ffgz.tsg.suse.edu.cn/),a free,web-accessible,and user-friendly platform.WheatOmics not only empowers the effective access to the visualized multi-omics data of user-interested genes but also offers several distinctive and practical toolkits that can ease almost every aspect of wheat functional genomics studies(Figure 1A).Shengwei Ma Meng Wang Jianhui Wu Weilong Guo Yongming Chen Guangwei Li Yanpeng Wang Weiming Shi Guangmin Xia Daolin FU Zhensheng Kang Fei Ni 2021Molecular Plant2021,14,12:9
3Landform classification using soil data and remote sensing in northern Ordos Plateau of China显示文摘地形分类通常仅仅用地志的高度被做。然而,实践显示在一样的高度的地点可以有显然不同的地形,取决于在那些地点下面的土壤的特征。这研究的目的到过:1 ) 开发基于高度和土壤特征的一条地形分类途径;并且 2 ) 使用这条途径在位于中国的北 Ordos 高原的一个分水岭以内决定地形。用从 200 个采样地点在 134 点收集的数据,这研究决定了那 D10 (土壤粒子的直径10%由重量更好)并且在 2010 获得的长期的平均土壤潮湿,能从遥感形象在合理精确性被估计,能被用来代表学习分水岭的土壤特征。另外,采样数据表明这个分水岭由地形的九个班组成,也就是活动的沙丘( MD ),活动半活动的沙丘( SMD ),滚动固定修理半的沙丘(讨论请求),完全沙的土地( FD ),草多的沙的土地( GS ),基岩( BR ),完全沙的基岩( FSB ),山谷农业土地( VA )和盐湖( SW )。一套逻辑回归方程用在 134 个采样地点收集并且验证了在留下使用数据的数据被导出 66 个地点。确认显示这些方程有中等分类精确性(Kappa 系数[^(K)]\hat K >43%) 。结果表明在学习分水岭的主导的班是 FD (36.3%), BR (27.0%),和 MD (23.5%)地形的另外的六种类型(即, SMD ,讨论请求, GS , FSB , VA ,并且 SW )在为13.2%的联合报道。进一步,在这研究决定的地形与一张地质上基于的分类地图介绍的班相比。比较显示地质上基于的分类不能在依赖于土壤特征的一个班以内识别多重地形。LUO Yanyun LIU Tingxi WANG Xixi DUAN Limin ZHANG Shengwei SHI Junxiao 2012Journal of Geographical Sciences2012,22,4:3
4PGE geo- chemistry and Re-Os dating of massive sulfide ores from the Baimazhai Cu-Ni deposit, Yunnan Province, China 显示文摘Sun Xiaoming Wang Shengwei Sun Weidong Shi Guiyong Sun Yali Xiong Dexin Qu Wenjun Du Andao 2008Lithos2008,105,12:1
5Combining push-pull airflow and top draft hood for local exhaust of tyre vulcanization process显示文摘This paper proposes a push-pull airflow combined with a top draft hood to conduct local exhaust in a rubber workshop.Field measurements are carried out to investigate the characteristics of the emission source,while numerical simulation is performed based on the measurement to test the capture efficiency and to further optimize various parameters including push velocity,hood height and exhaust air rate.Compared with the high-hanging hood,the low-hanging hood can effectively capture the pollutant generated by tyre with lower exhaust air rate.The capture efficiency of the low-hanging hood reaches 98.18%with exhaust air rate of 6000 m^(3)/h and push air velocity of 5m/s.The results indicates that the new ventilation appliance can effectively collect the pollutant at a relatively low exhaust rate.Kai Liu Shengwei Yang Lingjie Zeng Jun Gao Yumei Hou Changsheng Cao Bo Shi Xiangjin Mo Qingyu Zhang Chun Hou 2020Energy and Built Environment2020,1,3:1
6Write-once read-many-times memory based on a single layer of pentacene 显示文摘Shi Shengwei Peng Junbiao Lin Jian 2009IEEE Electron Device letters2009,30,4:1
7PGE geochemistry and Re-Os dating of massive sulfide ores from the Baimazhai Cu-Ni deposit,Yunnan province,China显示文摘Sun Xiaoming Wang Shengwei Sun Weidong Shi Guiyong Sun Yali Xiong Dexin Qu Wenjun Du Andao 2008Lithos2008,105,:1
8Transcriptome profiling,molecular biological and physiological studies reveal a major role for ethylene in cotton fiber cell elongation显示文摘Shi Yonghui Zhu Shengwei Mao Xizeng 2006Plant Cell2006,18,3:1
9Qinghai-tibetan plateau peatland sustainable utilization under anthropogenic disturbances and climate change显示文摘Often referred to as the“Third Pole,”China’s Qinghai-Tibetan Plateau developed large amounts of peatland owing to its unique alpine environment.As a renewable resource,peat helps to regulate the climate as well as performing other important functions.However,in recent years,intensifying climate change and anthropogenic disturbances have resulted in peatland degradation and consequently made sustainable development of peatland more difficult.This review summarizes peatland ecological and economic functions,including carbon sequestration,biodiversity conservation,energy supplies,and ecotourism.It identifies climate change and anthropogenic disturbances as the two key factors attributing to peatland degradation and ecosystem carbon loss.Current problems in environmental degradation and future challenges in peatland management under the effects of global warming are also discussed and highlighted.Gang Yang Changhui Peng Huai Chen Faqin Dong Ning Wu Yanzheng Yang Yao Zhang Dan Zhu Yixin He Shengwei Shi Xiaoyang Zeng Tingting Xi Qingxiang Meng Qiuan Zhu 2017Ecosystem Health and Sustainability2017,3,3:1
10Effects of MgA1Ce-CO3 Layered Double Hydroxideson the Ther- mal Stability of PVC Resin 显示文摘Yi Shi Yang Zhanhong Wang Shengwei 2011Journal of Applied Poly- mer Science2011,119,:1
11Ultrasound-assisted extraction of bound phenolic compounds from the residue of Apocynum venetum tea and their antioxidant activities显示文摘Bound phenolic compounds from the residue of Apocynum venetum(A.venetum)tea were released by alkaline digestion with sonication,followed by extraction using ethyl acetate(EtOAc).The fragment ions of compounds in free and bound forms were identified by liquid chromatography electrospray ionization tandem mass spectrometry(LC-ESI-MS/MS)in both positive and negative modes.Further investigation of chemical constituents in the EtOAc extract led to the isolation of eleven individual compounds,and their chemical structures were identified as(−)-epicatechin(1),(−)-loliolide(2),(−)-syringaresinol-4-O-β-D-glucopyranoside(3),alloside of benzyl alcohol(4),3-[(6-O-hexopyranosylhexopyranosyl)oxy]-2-(palmitoyloxy)propyl(9Z,12Z,15Z)-9,12,15-octadecatrienoate(5),apocynoside I(6),quercetin-3-O-β-D-glucopyranoside(7),kaempferol-3-O-β-D-glucopyranoside(8),[1-acetyloxy-3-[3,4,5-trihydroxy-6-[[3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxymethyl]oxan-2-yl]oxypropan-2-yl]hexadecanoate(9),1-stearoyl-2-palmitoyl-sn-glycerol(10),and 3-hexene-l-O-β-D-glucoside(11)using a series of spectroscopic methods.Compounds 2–5 and 9–11 were isolated for the first time from A.venetum,while antioxidant experiments showed that compounds 1,7,and 8 displayed strong DPPH and ABTS+radical scavenging activities.This study represents the first investigation of bound phenolic compounds with potential health benefits in the residue of A.venetum tea.Shengwei Sun Yiwen Zhao Luyao Wang Yuzhi Tan Yaning Shi Rita-Cindy Aye-Ayire Sedjoah Yuting Shao Longxiang Li Mengxi Wang Jiashuai Wan Xia Fan Rong Guo Zhihong Xin 2022Food Bioscience2022,47,3:0
12Protective Film for NiSO4.6H2O UV Light Filter Based on Diisocyanate-Bridged Polysilsesquioxane显示文摘Weimei Shi Hong Tian Shengwei Hu Yao Xu Dong WU 2011材料科学与工程(中英文版)2011,5,1:0
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