维普中文期刊产品整合服务
4篇 您的检索式:作者名="XIAO Xingji"
    题名 作者 年代 出处 被引量
1Optical meta-waveguides for integrated photonics and beyond显示文摘The growing maturity of nanofabrication has ushered massive sophisticated optical structures available on a photonic chip.The integration of subwavelength-structured metasurfaces and metamaterials on the canonical building block of optical waveguides is gradually reshaping the landscape of photonic integrated circuits,giving rise to numerous metawaveguides with unprecedented strength in controlling guided electromagnetic waves.Here,we review recent advances in meta-structured waveguides that synergize various functional subwavelength photonic architectures with diverse waveguide platforms,such as dielectric or plasmonic waveguides and optical fibers.Foundational results and representative applications are comprehensively summarized.Brief physical models with explicit design tutorials,either physical intuition-based design methods or computer algorithms-based inverse designs,are cataloged as well.We highlight how meta-optics can infuse new degrees of freedom to waveguide-based devices and systems,by enhancing light-matter interaction strength to drastically boost device performance,or offering a versatile designer media for manipulating light in nanoscale to enable novel functionalities.We further discuss current challenges and outline emerging opportunities of this vibrant field for various applications in photonic integrated circuits,biomedical sensing,artificial intelligence and beyond.Yuan Meng Yizhen Chen Longhui Lu Yimin Ding Andrea Cusano Jonathan A.Fan Qiaomu Hu Kaiyuan Wang Zhenwei Xie Zhoutian Liu Yuanmu Yang Qiang Liu Mali Gong Qirong Xiao Shulin Sun Minming Zhang Xiaocong Yuan Xingjie Ni 2021Light(Science & Applications)2021,10,12:6
2Surface Amendments Can Ameliorate Subsoil Acidity in Tea Garden Soils of High-Rainfall Environments显示文摘强烈酸的土壤(pH < 5.0 ) 对茶(山茶 sinensis ) 有害生产和质量。很少信息都不在表面修正案的能力上存在改善在茶花园土壤的心土酸味。A 120-d 温室列沥滤实验用通常可得到的土壤改良物被进行。碱的炉渣(作为) 并且器官的残余,猪粪肥(下午) 和在灰碱度和 C/N 比率不同的油菜籽蛋糕(RC ) 独自并且在联合被合并到土壤列的表面(0-15 厘米)(10 厘米内部的直径 × 50 厘米长) 从 Ultisol 的酸的土壤层(15-30 厘米) 与土壤收拾行李(起始的 pH = 4.4 ) 。在 120-d 实验期间,土壤列被浇(在 9 应用上的大约 127 公里) 根据长期的平均数,年度降雨(1 143 公里) 和 leachates 镇定、分析。在实验的结束,土壤列被划分成各种各样的深度,土壤的化学性质被测量。有更高的 C/N 比率的下午增加了心土 pH,而有更低的 C/N 比率的 RC 减少了心土 pH。然而,联合了有的修正案独自修正案比也减少心土酸味的一个极有能力。心土的 pH 的增加主要被归功于到减少的基础阳离子集中和在溶解的器官的碳(文档) 和从修改的层被沥滤在下面的硝酸盐的固定在场的器官的阴离子的分解。一重要(P < 0.05 ) 在碱度生产之间的关联(减少的可交换的酸味 -N 周期碱度) 并且碱度平衡(网碱度生产 -N 周期碱度) 在实验的结束被观察。另外,联合了显著地增加的修正案(P < 0.05 ) 心土阳离子集中和减少的心土艾尔浸透(P < 0.05 ) 。联合应用就象表面的器官的修正案,土壤在在高降雨的区域减少心土酸味是有效的。在地条件下面并且在更长的 timeframes 上的进一步的调查被需要充分在改善理解他们的实际有效性在自然地发生沥滤下面的更深的土壤层的酸味政体。WANG Lei Clayton R. BUTTERLY CHEN Qiuhui MU Zhibo WANG Xia XI Yunguan ZHANG Jibing XIAO Xingji 2016Pedosphere2016,26,2:5
3Anti-NLRP3 inflammasome abietane diterpenoids from Callicarpa bodinieri and their structure elucidation显示文摘Callica rpabodinieri is a Chinese traditional medicine herb with anti-inflammatory activity in clinic.Herein,we report two new 9,10-seco and etherified abietane diterpenoids bodinieric acids J and K(1 and 2) and one known compound(3) isolated from the leaves and twigs of this plant.Their chemical structures were elucidated by detailed spectrometry data analysis and DP4+NMR calculation methods.Hypothetical biosynthetic pathways of 1-3 were preliminarily speculated.Compound 3 inhibited inflammasome activation and exhibited blockage of NLRP3 inflammasome activation at non-cytotoxic concentrations in vitro.Junbo Gao Xingjie Zhang Kun Shang Weimao Zhong Ruihan Zhang Xiaochang Dai Xiaoli Li Qi Wang Yan Zou Weilie Xiao 2020Chinese Chemical Letters2020,31,2:3
4Numerical modeling of the critical pipeline inclination for the elimination of the water accumulation on the pipe floor in oil-water fluid flow显示文摘In this work,numerical models were developed to investigate the critical inclination of a pipeline to eliminate the water accumulation at the floor of the pipe carrying oil-water fluid.Computational fluid dynamics software was used to establish a geometric model of the pipe with various inclination angles,and a grid-independent verification was conducted to determine a reasonable meshing method.Quantitative relationships were determined between the pipe inclination angle and the affecting factors including the flow velocity,viscosity and the pipe diameter,where the water accumulation would not be able to occur.Generally,the critical inclination angle increases with the fluid flow velocity.The refluxing of water is the key mechanism causing the water accumulation at the bottom of the pipe.In addition to the fluid flow velocity,an increase in fluid viscosity and a decrease in the pipe diameter cause an increase of the critical inclination angle that the water phase can be carried away by oil.The model can be used to determine the critical inclination of pipelines carrying oil-water fluid to cause the water accumulation and the operating conditions that can eliminate the accumulation of water phase at the pipe floor.Xiaoqin Song Dongxin Li Xiao Sun Xingjie Mou Y.Frank Cheng Yuexin Yang 2021Petroleum2021,7,2:1
返回顶部 每页显示:
共1页 首页 上一页 第1页 下一页 末页 /1 跳转

网站首页 | 关于我们 | 联系我们 | 产品服务 | 客服中心 | 广告服务 | 版权声明 | 网站联盟 | 友情链接 | 售卡网点

版权所有© 渝B2-20050021-1 渝公网安备 50019002500403号 违法和不良信息举报中心

互联网出版许可证 新出网证(渝)字10号 全国400电话 - 免长途话费