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| 1 | ELASTIC WAVE LOCALIZATION IN TWO-DIMENSIONAL PHONONIC CRYSTALS WITH ONE-DIMENSIONAL QUASI-PERIODICITY AND RANDOM DISORDER显示文摘在里面飞机并且反飞机橡皮波浪宣传在的乐队结构二维订并且混乱(在一个方向) phononic 晶体在这份报纸被学习。波浪繁殖的本地化被介绍由 plane-wave-based 转移矩阵方法是计算的本地化因素的概念由于随机的混乱讨论。由以一个特殊方法从频率把伪频率当作偏差,在另外的方向在一个方向和翻译对称有伪频率(Fibonacci 顺序) 的二种伪 phononic 水晶被考虑,乐队结构被使用本地化因素描绘。结果证明本地化因素是在描绘二维的完美、随机混乱、伪周期的 phononic 晶体的乐队差距的一个有效参数。phononic 晶体的乐队结构能被不同随机的混乱调节或改变伪周期的参数。伪 phononic 晶体比的与更狭窄的宽度展出更多的乐队差距订并且随机混乱的系统。 | Ali Chen Yuesheng Wang Guilan Yu Yafang Guo Zhengdao Wang | 2008 | Acta Mechanica Solida Sinica2008,21,6: | 8 |
| 2 | Extraction of hydrogen chloride by a coupled reaction-solvent extraction process显示文摘A coupled 反应溶剂抽取过程被用来把 HCl 从模仿的蒸馏器浪费移开。各种各样的提炼之物和 diluents 的抽取表演被比较,在各种各样的 diluents 的 N235 (第三级的胺的混合物) 的明显的盐基度是坚定的。最好的结果作为提炼之物用 N235 和 isoamyl 酒精被获得并且稀释分别地。从联合抽取的 HCl 的收益与这个抽取系统是 75% 。为在两个的 HCl 的移动的机制直接、联合的抽取被调查。为联合抽取, R 3 NHCl 离子对建筑群涉及 HCl 移动。为直接抽取,机制在 HCl 的高集中包含了氢契约的形成。 | Yunzhao Li Xingfu Song Guilan Chen Shuying Sun Yanxia Xu Jianguo Yu | 2015 | Frontiers of Chemical Science and Engineering2015,9,4: | 6 |
| 3 | Preparation of calcium carbonate and hydrogen chloride from distiller waste based on reactive extraction-crystallization process 显示文摘 | Li Yunzhao Song Xingfu Chen Guilan Sun Ze Xu Yanxia Yu Jianguo | 2015 | Chemical Engineering Journal2015,278,: | 1 |
| 4 | Virus-inspired surface-nanoengineered antimicrobial liposome:A potential system to simultaneously achieve high activity and selectivity显示文摘Enveloped viruses such as SARS-CoV-2 frequently have a highly infectious nature and are considered effective natural delivery systems exhibiting high efficiency and specificity.Since simultaneously enhancing the activity and selectivity of lipopeptides is a seemingly unsolvable problem for conventional chemistry and pharmaceutical approaches,we present a biomimetic strategy to construct lipopeptide-based mimics of viral architectures and infections to enhance their antimicrobial efficacy while avoiding side effects.Herein,a surface-nanoengineered antimicrobial liposome(SNAL)is developed with the morphological features of enveloped viruses,including a moderate size range,lipid-based membrane structure,and highly lipopeptide-enriched bilayer surface.The SNAL possesses virus-like infection to bacterial cells,which can mediate high-efficiency and high-selectivity bacteria binding,rapidly attack and invade bacteria via plasma membrane fusion pathway,and induce a local“burst”release of lipopeptide to produce irreversible damage of cell membrane.Remarkably,viral mimics are effective against multiple pathogens with low minimum inhibitory concentrations(1.6-6.3μg mL1),high bactericidal efficiency of>99%within 2 h,>10-fold enhanced selectivity over free lipopeptide,99.8%reduction in skin MRSA load after a single treatment,and negligible toxicity.This bioinspired design has significant potential to enhance the therapeutic efficacy of lipopeptides and may create new opportunities for designing next-generation antimicrobials. | Yin Shi Xiaoqian Feng Liming Lin Jing Wang Jiaying Chi Biyuan Wu Guilin Zhou Feiyuan Yu Qian Xu Daojun Liu Guilan Quan Chao Lu Xin Pan Jianfeng Cai Chuanbin Wu | 2021 | Bioactive Materials2021,6,10: | 1 |
| 5 | Boosting Electrocatalytic Oxygen Evolution by Cation Defect Modulation via Electrochemical Etching显示文摘Defects engineering is an efficient strategy to enhance the performance of electrode materials by modulating the local electronic structure but usually requires costly and complicated processing.Here,an electrochemical reduction etching method has been developed for controllable tailoring of the cationic defects in iron-based oxides under mild conditions.The optimized defective spinel-type iron nickel oxide exhibits an overpotential as low as 270 mV at 10 mA cm−2 and a Tafel slope of only 33.8 mV dec−1 for the oxygen evolution reaction(OER),outperforming the benchmark RuO2 and pristine oxide.Experiments and theoretical calculations reveal that Fe vacancies can enhance Ni–O covalency,increase the density of active sites,and optimize the surface electronic structure,which promote the water adsorption/activation and moderate oxygen intermediate species adsorption,thus significantly enhancing OER activity.This work provides a promising approach to create cation deficiency and mechanistic insight to understand the vacancy-induced enhancement of oxygen electrocatalysis. | Xiang Chen Meng Yu Zhenhua Yan Weiyi Guo Guilan Fan Youxuan Ni Jiuding Liu Wei Zhang Wei Xie Fangyi Cheng Jun Chen | 2021 | CCS Chemistry2021,3,1: | 1 |
| 6 | Selective nitrogen doping on carbon cloth to enhance the performance of zinc anode显示文摘Metallic zinc is attractive anode material of rechargeable aqueous Zn-based batteries due to its ambient stability,high volumetric capacity,and abundant reserves.Nonetheless,Zn anodes suffer from issues such as low coulombic efficiency(CE),large polarization and dendrite formation.Herein,uniform Zn electrodeposition is reported on carbon substrates by selective nitrogen doping.Combined experimental and theoretical investigations demonstrate that pyrrolic and pyridinic nitrogen doped in carbon play beneficial effect as zinc-philic sites to direct nucleation and growth of metallic Zn,while negligible effect is observed for graphite nitrogen in Zn plating.The carbon cloth with modified amount of doped pyrrolic and pyridinic nitrogen stabilizes Zn plating/stripping with 99.3%CE after 300 cycles and significantly increases the deliverable capacity at high depth of charge and discharge compared to undoped carbon substrate and Zn foil.This work provides a better understanding of heteroatom doping effect in design and preparation of stable 3 D carbon-supported zinc anode. | Lei Wang Guilan Fan Jiuding Liu Le Zhang Meng Yu Zhenhua Yan Fangyi Cheng | 2021 | Chinese Chemical Letters2021,32,3: | 1 |
| 7 | Solubility and diffusivity of CO2 in n-butanol + N235 system and absorption mechanism of CO2 in a coupled reactionextraction process显示文摘 | Guilan Chen Xingfu Song Shuying Sun Yanxia Xu Jianguo Yu | 2016 | Frontiers of Chemical Science and Engineering2016,10,4: | 0 |