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| 1 | Identification of massive molecular markers in Echinochloa phyllopogon using a restriction-site associated DNA approach显示文摘Echinochloa phyllopogon proliferation seriously threatens rice production worldwide. We combined a restriction-site associated DNA(RAD) approach with Illumina DNA sequencing for rapid and mass discovery of simple sequence repeat(SSR) and single nucleotide polymorphism(SNP) markers for E. phyllopogon. RAD tags were generated from the genomic DNA of two E. phyllopogon plants, and sequenced to produce 5197.7 Mb and 5242.9 Mb high quality sequences, respectively. The GC content of E. phyllopogon was 45.8%, which is high for monocots. In total, 4710 putative SSRs were identified in 4132 contigs, which permitted the design of PCR primers for E. phyllopogon. Most repeat motifs among the SSRs identified were dinucleotide(>82%), and most of these SSRs were four motif-repeats(>75%). The most frequent motif was AT, accounting for 36.3%-37.2%, followed by AG and AC. In total, 78 putative polymorphic SSR loci were found. A total of 49,179 SNPs were discovered between the two samples of E. phyllopogon, 67.1% of which were transversions and 32.9% were transitions. We used eight SSRs to study the genetic diversity of four E. phyllopogon populations collected from rice fields in China and all eight loci tested were polymorphic. | Guoqi Chen Wei Zhang Jiapeng Fang Liyao Dong | 2017 | Plant Diversity2017,39,5: | 2 |
| 2 | Hydrodynamiclubrication of microdimple textured surface using three-dimensional CFD显示文摘 | Han Jing Fang Liang Sun Jiapeng | 2010 | Tribology Transactions2010,53,: | 1 |
| 3 | Hydrodynamic lubri- cation of microdimple textured surface using three-dimensional CFD显示文摘 | Han Jing Fang Liang Sun Jiapeng | 2010 | Tribology Transactions2010,53,: | 1 |
| 4 | Hydrodynamic lubrication of microdimple textured surface using three-dimensional CFD显示文摘 | Han Jing Fang Liang Sun Jiapeng | | 0,,06: | 1 |
| 5 | Enhancing corrosion resistance of ZK60 magnesium alloys via Ca microalloying: The impact of nanoscale precipitates显示文摘Enhancing corrosion resistance of Mg-Zn alloys with high strength and low cost was critical for broadening their large-scale practical applications. Here we prepared solutionized, peak-and over-aged ZK60 alloys with and without microalloying Ca(0.26 wt.%) to explore the effects of nanoscale precipitates on their corrosion behavior in detail via experimental analyses and theoretical calculations. The results suggested the peak-aged ZK60 alloy with Ca addition showed improved corrosion resistance in comparison with the alloys without Ca,owing to the contribution of Ca on the refinement of precipitates and increase in their number density. Although the precipitates and Mg matrix formed micro-galvanic couples leading to dissolution, the fine and dense precipitates could generate “in-situ pinning” effect on the corrosion products, forming a spider-web-like structure and improving the corrosion inhibition ability accordingly. The pinning effect was closely related to the size and number density of precipitates. This study provided important insight into the design and development of advanced corrosion resistant Mg alloys. | Wei Fu Hejie Yang Tianshu Li Jiapeng Sun Shengwu Guo Daqing Fang Weichao Qin Xiangdong Ding Yimin Gao Jun Sun | 2023 | Journal of Magnesium and Alloys2023,11,9: | 0 |
| 6 | Recent Progress in Cellulose-Based Flexible Sensors显示文摘Flexible sensors are attractive due to potential applications in body exercise and ambient gas monitoring systems.Cellulose and its derivatives have combined superiorities such as intrinsic and structural flexibility,ease of chemical functionalization,moisture sensitivity,and mechanical stability,enabling them to be promising candidates as flexible supporting substrates and flexible sensitive materials.Significant progress consequently has been achieved to improve mechanical,electrical,and chemical performance.The latest advance in materials synthesis,structure design,fabrication control,and working mechanism of novel cellulose-based flexible sensors are reviewed and discussed,including strain sensors,humidity sensors,and harmful gas sensors.Various strategies were summarized to enhance sensor performance by surface group modifications,inorganic and organic conducting fillers optimization,multilayer structure design.Newly emerged processing techniques of self-assembly,vacuum filtration,and 3D printing were introduced as well to construct multiscale microstructures.The integration of multiple sensors toward smart and healthy exercise monitoring system is briefly reviewed.The facing challenges and future opportunities of cellulose-based flexible sensors were discussed and proposed at the end.This review provides inspiration and guidelines on how to design and fabricate cellulose-based flexible sensors. | Ningli An Jingxuan Qin Xing Zhou Quandai Wang Changqing Fang Jiapeng Guo Bin Nan | 2022 | Journal of Renewable Materials2022,10,9: | 0 |
| 7 | Advanced ocean wave energy harvesting:current progress and future trends显示文摘With a transition towards clean and low-carbon renewable energy,against the backdrop of the fossil-energy crisis and rising pollution,ocean energy has been proposed as a significant possibility for mitigating climate change and energy shortages for its characteristics of clean,renewable,and abundant.The rapid development of energy harvesting technology has led to extensive applications of ocean wave energy,which,however,has faced certain challenges due to the low-frequency and unstable nature of ocean waves.This paper overviews the debut and development of ocean wave energy harvesting technology,and discusses the potential and application paradigm for energy harvesting in the“intelligent ocean.”We first describe for readers the mechanisms and applications of traditional wave energy converters,and then discuss current challenges in energy harvesting performance connected to the characteristics of ocean waves.Next,we summarize the progress in wave energy harvesting with a focus on advanced technologies(e.g.,data-driven design and optimization)and multifunctional energy materials(e.g.,triboelectric metamaterials),and finally propose recommendations for future development. | Fang HE Yibei LIU Jiapeng PAN Xinghong YE Pengcheng JIAO | 2023 | Journal of Zhejiang University-Science A(Applied Physics & Engineering)2023,24,2: | 0 |