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| 1 | Flow-resistance analysis of nano-confined fluids inspired from liquid nano-lubrication:A review显示文摘How to reduce flow resistance of nano-confined fluids to achieve a high flux is a new challenge for modern chemical engineering applications, such as membrane separation and nanofluidic devices. Traditional models are inapplicable to explain the significant differences in the flow resistance of different liquid–solid systems.On the other hand, friction reduction in liquid nano-lubrication has received considerable attention during the past decades. Both fields are exposed to a common scientific issue regarding friction reduction during liquid–solid relative motion at nanoscale. A promising approach to control the flow resistance of nano-confined fluids is to reference the factors affecting liquid nano-lubrication. In this review, two concepts of the friction coefficient derived from fluid flow and tribology were discussed to reveal their intrinsic relations. Recent progress on low or ultra-low friction coefficients in liquid nano-lubrication was summarized based on two situations. Finally, a new strategy was introduced to study the friction coefficient based on analyzing the intermolecular interactions through an atomic force microscope(AFM), which is a cutting-point to build a new model to study flowresistance at nanoscale. | Xianzhu Huang Jian Wu Yudan Zhu Yumeng Zhang Xin Feng Xiaohua Lu | 2017 | Chinese Journal of Chemical Engineering2017,25,11: | 3 |
| 2 | Physicochemical properties and structure of fluid at nano-/micro-interface:Progress in simulation and experimental study显示文摘In modern chemical engineering processes, the involvement of solid/fluid interface is the most important component of process intensification techniques, such as confined membrane separation and catalysis. In the review, we summarized the research progress of the latest theoretical and experimental works to elucidate the contribution of interface to the fluid properties and structures at nano-and micro-scale. We mainly focused on water, alcohol aqueous solution, and ionic liquids, because they are classical systems in interfacial science and/or widely involved in the industrialization process. Surface-induced fluids were observed in all reviewed systems and played a critical role in physicochemical properties and structures of outside fluid. It can even be regarded as a new interface, when the adsorption layer has a strong interaction with the solid surface. Finally, we proposed a perspective on scientific challenges in the modern chemical engineering processes and outlined future prospects. | Qingwei Gao Yumeng Zhang Shuting Xu Aatto Laaksonen Yudan Zhu Xiaoyan Ji Xiaohua Lu | 2020 | Green Energy & Environment2020,5,3: | 3 |
| 3 | Progress in molecular-simulation-based research on the effects of interface-induced fluid microstructures on flow resistance显示文摘In modern chemical engineering processes, solid interface involvement is the most important component of process intensification techniques, such as nanoporous membrane separation and heterogeneous catalysis. The fundamental mechanism underlying interfacial transport remains incompletely understood given the complexity of heterogeneous interfacial molecular interactions and the high nonideality of the fluid involved. Thus, understanding the effects of interface-induced fluid microstructures on flow resistance is the first step in further understanding interfacial transport. Molecular simulation has become an indispensable method for the investigation of fluid microstructure and flow resistance. Here, we reviewed the recent research progress of our group and the latest relevant works to elucidate the contribution of interface-induced fluid microstructures to flow resistance.We specifically focused on water, ionic aqueous solutions, and alcohol–water mixtures given the ubiquity of these fluid systems in modern chemical engineering processes. We discussed the effects of the interfaceinduced hydrogen bond networks of water molecules, the ionic hydration of ionic aqueous solutions, and the spatial distributions of alcohol and alcohol–water mixtures on flow resistance on the basis of the distinctive characteristics of different fluid systems. | Yumeng Zhang Yudan Zhu AnranWang Qingwei Gao Yao Qin Yaojia Chen Xiaohua Lu | 2019 | Chinese Journal of Chemical Engineering2019,27,6: | 2 |
| 4 | Extra low friction coefficient caused by the formation of a solid-like layer:A new lubrication mechanism found through molecular simulation of the lubrication of MoS_2 nanoslits显示文摘Monolayer molybdenum disulfide(MoS2) is a novel two-dimensional material that exhibits potential application in lubrication technology. In this work, molecular dynamics was used to investigate the lubrication behaviour of different polar fluid molecules(i.e., water, methanol and decane) confined in monolayer Mo S2 nanoslits. The pore width effect(i.e., 1.2, 1.6 and 2.0 nm) was also evaluated. Results revealed that decane molecules exhibited good lubricating performance compared to the other two kinds of molecules. The friction coefficient followed the order of decane b methanol b water, and decreased evidently as the slit width increased, except for decane. Analysis of the spatial distribution and mobility of different confined fluid molecules showed that a solid-like layer was formed near the slit wall. This phenomenon led to the extra low friction coefficient of confined decane molecules. | Jiahui Li Yudan Zhu Yumeng Zhang Qingwei Gao Wei Zhu Xiaohua Lu Yijun Shi | 2018 | Chinese Journal of Chemical Engineering2018,26,12: | 2 |
| 5 | Wetting behavior of ionic liquid on mesoporous titanium dioxide surface by atomic force microscopy显示文摘 | An Rong Zhu Yudan Wu Nanhua Xie Wenlong Lu Jiawei Feng Xin Lu Xiaohua | 2013 | ACS Applied Materials & Interfaces2013,5,: | 1 |
| 6 | Quality Evaluation of Streptocaulon griffithii Hook Based on Fingerprint and Quantitative Analysis of Multiple Components by the QAMS Method显示文摘[Objectives]Chromatographic fingerprint analysis technology and quantitative analysis of multi-components by singlemarker(QAMS)were used to identify the authenticity and multi-component quantitative analysis ofStreptocaulon griffithiiHook,which provided experimental reference for the quality evaluation and control ofS.griffithiiHook.[Methods]Method was carried out on Agilent ZORBAX SB-C18(150 mm×4.6 mm,5μm)column with mobile phase composed of methanol-0.2%phosphoric acid solution at a flow rate of 1.0 mL/min in gradient elution mode.The column temperature was maintained at 30℃,the injection volume was 5μL,and the detection wavelengths were set at 230 nm.The HPLC fingerprint ofS.griffithiiHook was established byFingerprint Similarity Evaluation Software of Traditional Chinese Med-i cine(2012 edition),and the quality of 11 batches ofS.griffithiiHook extracts was analyzed.The content of chlorogenic acid,caffeic acid and4-methoxysalicylaldehyde inS.griffithiiHook was determined by QAMS.[Results]Thirteen common peaks were identified in the extract ofS.g riffithiiHook,and three components were identified as chlorogenic acid,caffeic acid and 4-methoxysalicylaldehyde,there was no significant difference between QAMS method and external standard method with chlorogenic acid as reference substance.[Conclusions]The established HPLC method is specific,accurate,stable and reproducible,and it can be used as an effective method for the quality control ofS.griffithii Hook. | Xinying MO Honghan QIN Yudan LU Baoxian LIANG Hongsheng TAN Haisheng ZENG | 2023 | Medicinal Plant2023,14,2: | 0 |
| 7 | Drought-triggered repression of miR166 promotes drought tolerance in soybean显示文摘Drought stress limits agricultural productivity worldwide.Identifying and characterizing genetic components of drought stress-tolerance networks may improve crop resistance to drought stress.We show that the regulatory module formed by miR166 and its target gene,ATHB14-LIKE,functions in the regulation of drought tolerance in soybean(Glycine max).Drought stress represses the accumulation of miR166,leading to upregulation of its target genes.Optimal knockdown of miR166 in the stable transgenic line GmSTTM166 conferred drought tolerance without affecting yield.Expression of ABA signaling pathway genes was regulated by the miR166-mediated regulatory pathway,and ATHB14-LIKE directly activates some of these genes.There is a feedback regulation between ATHB14-LIKE and MIR166 genes,and ATHB14-LIKE inhibits MIR166 expression.These findings reveal that drought-triggered regulation of the miR166-mediated regulatory pathway increases plants drought resistance,providing new insights into drought stress regulatory network in soybean. | Chen Zhao Jingjing Ma Chen Yan Yu Jiang Yaohua Zhang Yudan Lu Ye Zhang Suxin Yang Xianzhong Feng Jun Yan | 2024 | The Crop Journal2024,12,1: | 0 |
| 8 | Effect of dimethyl carbonate on the behavior of water confined in carbon nanotube显示文摘The dehydration of water by dimethyl carbonate(DMC)is of great significance for its application in electrochemistry and oil industry.With the rapid development of nanomaterial,one-dimensional(e.g.carbon nanotube(CNT))and two-dimensional(e.g.lamellar graphene)materials have been widely used for molecular sieving.In this work,the molecular behavior of dimethyl carbonate/water mixture confined in CNT with varying diameters was studied based on molecular dynamics simulation.Due to different van der Waals interactions for the components in the mixtures with the solid surface,DMC molecules are preferentially adsorbed on the inner surface of the pore wall and formed an adsorption layer.Comparing with the pure water molecules confined in CNT,the adsorption DMC layer shows notable effect on the local compositions and microstructures of water molecules under nanoconfinement,which may result in different water mobility.Our analysis shows that the surface-induced DMC molecules can destroy the hydrogen bonding network of water molecules and result in an uniform and dispersed distribution of water molecules in the tube.These clear molecular understandings can be useful in material design for membrane separation. | Qingwei Gao Yumeng Zhang Aatto Laaksonen Yudan Zhu Xiaoyan Ji Shuangliang Zhao Yaojia Chen Xiaohua Lu | 2021 | Chinese Journal of Chemical Engineering2021,34,3: | 0 |
| 9 | Preliminary Study on Quality Analysis of Root of Griffith Streptocaulon显示文摘[Objectives]To make a preliminary study on quality analysis of Root of Griffith Streptocaulon.[Methods]The moisture,ash and extract of Root of Griffith Streptocaulon were tested in accordance with the requirements of 2015 Chinese Pharmacopoeia(Volume 4).[Results]The moisture content of Root of Griffith Streptocaulon was not higher than 12.74%,not lower than 6.26%,total ash content was not higher than 15.36%,not lower than 6.17%,acid-insoluble ash content was not higher than 0.55%,not lower than 0.17%,and extract was not higher than 11.83%,not lower than 5.23%.[Conclusions]This experiment made a preliminary study on the quality analysis of the Root of Griffith Streptocaulon,in the hope of providing a scientific basis for its quality control and formulation of the quality standard. | Haisheng ZENG Chengtong LIU Silu HE Hongming CHEN Xinying MO Yudan LU Xiaobao GUO | 2020 | Medicinal Plant2020,11,5: | 0 |
| 10 | Molecular insights on Ca^(2+)/Na+separation via graphene-based nanopores:The role of electrostatic interactions to ionic dehydration显示文摘Ca^(2+)/Na+separation is a common problem in industrial applications,biological and medical fields.However,Ca^(2+)and Na+have similar ionic radii and hydration radii,thus Ca^(2+)/Na+separation is challenging.Inspired by biological channels,group modification is one of the effective methods to improve the separation performance.In this work,molecular dynamics simulations were performed to investigate the effects of different functional groups(COO,NH3+)on the separation performance of Ca^(2+)and Na+through graphene nanopores under an electric field.The pristine graphene nanopore was used for comparison.Results showed that three types of nanopores preferred Ca^(2+)to Na+,and Ca^(2+)/Na+selectivity followed the order of GE-COO(4.06)>GE(1.85)>GE-NH3+(1.63).Detailed analysis of ionic hydration microstructure shows that different nanopores result in different hydration factors for the second hydration layer of Ca^(2+)and the first layer of Na+.Such different hydration factors corresponding to the dehydration ability can effectively evaluate the separation performance.In addition,the breaking of hydrogen bonds between water molecules due to electrostatic effects can directly affect the dehydration ability.Therefore,the electrostatic effect generated by group modification will affect the ionic hydration microstructure,thus reflecting the differences in dehydration ability.This in turn affects the permeable and separation performance of cations.The results of this work provide perceptive guidelines for the application of graphene-based membranes in ion separation. | Yumeng Zhang Yingying Zhang Xueling Pan Yao Qin Jiawei Deng Shanshan Wang Qingwei Gao Yudan Zhu Zhuhong Yang Xiaohua Lu | 2022 | Chinese Journal of Chemical Engineering2022,35,1: | 0 |