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| 1 | Monovalent cation perm-selective membranes(MCPMs)'New developments and perspectives显示文摘As one of the most typical and promising membrane processes, electrodialysis(ED) technique plays a more and more significant role in industrial separation. Especially, the separation of monovalent cations and multivalent cations is currently a hot topic, which is not only desirable for many industries but also challenging for academic explorations. The main aim of the present contribution is to view the advances of a wide variety of monovalent cation perm-selective membranes(MCPMs) and their preparation technologies including(1) covalent crosslinking,(2) surface modification,(3) polymer blending,(4) electrospinning,(5) nanofiltration alike membrane,and(6) organic–inorganic hybrid. The relevant advantages and disadvantages with respect to some specific cases have been discussed and compared in detail. Furthermore, we elaborately discuss the opportunities and challenges of MCPMs, the fabricating strategies to take and the future perspectives. | Liang Ge Bin Wu Dongbo Yu Abhishek N.Mondal Linxiao Hou Noor U1 Afsar Qiuhua Li Tingting Xu Jibin Miao Tongwen Xu | 2017 | Chinese Journal of Chemical Engineering2017,25,11: | 8 |
| 2 | Dissipative Particle Dynamics Simulation on Bonding Reaction Between Surface Modified Nanoparticles显示文摘A simulation study was carried out by using dissipative particle dynamics(DPD) method to explore the effects of properties of coating chains, such as length, density, rigidity of polymer chains, as well as the distance between nanoparticles on bonding reaction of coating chains grafted onto nanoparticles. The results show that bonding ratios of coated chains strongly depend on the length and density of coating chains. For nanoparticles with different coating densities, the optimum chain length for bonding reaction are varied. The rigidity of coating chains exhibits vigorous effects on bonding reaction that highly depends on chain lengths. DPD simulation can be used to study the bonding reaction between coated nanoparticles, which may help experimental synthesis of nanocomposites with excellent properties. | 唐伟 陈鹏 FENG Xiaoshuang XIA Ru QIAN Jiasheng CAO Ming SU Lifen MIAO Jibin | 2019 | Journal of Wuhan University of Technology(Materials Science)2019,34,1: | 1 |
| 3 | An effective way to stabilize silicon nitride nanoparticles dispersed in rubber matrix by a one-step process显示文摘 | Yanlong Tai Jibin Miao Jiasheng Qian | 2008 | Materials Chemistry and Physics2008,112,: | 1 |
| 4 | 显示文摘 | Tai Yanlong Miao Jibin Qian Jiasheng | 2008 | Materials Chemistry and Physics2008,112,2: | 1 |
| 5 | 显示文摘 | Tai Yanlong Miao Jibin Qian Jiasheng Xia Ru | 2008 | Ma-terials Chemistry and Physics2008,112,: | 1 |
| 6 | An effective way to stabilize silicon nitride nanoparticles dispersed in rubber matrix by a one-step process显示文摘 | Yanlong Tai Jibin Miao Jiasheng Qian Ru Xia Yuchuan Zhang | 2008 | Materials Chemistry and Physics2008,2,: | 1 |
| 7 | On the average degree of critical graphs with maximum degree six显示文摘 | Miao Lianying Qu Jibin Sun Qingbo | | 0,,21: | 1 |
| 8 | Synthesis of TiCl_(2) powders through reactive gas phase infiltration in a fluidized bed reactor显示文摘TiCl_(2) is a promising precursor for producing metallic titanium alloys and titanium-based ceramics.However,the effective synthesis of high-quality TiCl_(2) powder remains challenging.Herein,a fluidized bed reactor(FBR)providing a high gas-solid contact area was employed to synthesize TiCl_(2) powder using a reliable TiCl_(4)-Ti reaction system.Optimal reaction conditions(600℃and 120 min)were determined for the proposed Ti-TiCl_(4) system by kinetic investigation.A dense Ti layer was regenerated upon the original surface of the Ti powder as a result of TiCl_(2) disproportionation at high temperature(above 700℃),which impeded infiltration by gaseous TiCl_(4).The particle size of the Ti reducing agent played a vital role in the production of TiCl_(2) powder.A mean particle size of 24.5μm was confirmed to be the most feasible option based on the optimal chlorinated depth(17μm). | Miao Song Yafeng Yang Hongdan Zhao Maoqiao Xiang Qingshan Zhu Jibin Jia Chaoquan Hu Fen Yue | 2021 | Particuology2021,19,4: | 0 |
| 9 | Polarimetry feature parameter deriving from Mueller matrix imaging and auto-diagnostic signicance to distinguish HSIL and CSCC显示文摘High-grade squamous intraepithelial lesion(HSIL)is regarded as a serious precancerous state of cervix,and it is easy to progress into cervical invasive carcinoma which highlights the importance of earlier diagnosis and treatment of cervical lesions.Pathologists examine the biopsied cervical epithelial tissue through a microscope.The pathological examination will take a long time and sometimes results in high inter-and intra-observer variability in outcomes.Polarization imaging techniques have broad application prospects for biomedical diagnosis such as breast,liver,colon,thyroid and so on.In our team,we have derived polarimetry feature parameters(PFPs)to characterize microstructural features in histological sections of breast tissues,and the accuracy for PFPs ranges from 0.82 to 0.91.Therefore,the aim of this paper is to distinguish automatically microstructural features between HSIL and cervical squamous cell carcinoma(CSCC)by means of polarization imaging techniques,and try to provide quantitative reference index for patho-logical diagnosis which can alleviate the workload of pathologists.Polarization images of the H&E stained histological slices were obtained by Mueller matrix microscope.The typical path-ological structure area was labeled by two experienced pathologists.Calculate the polarimetry basis parameter(PBP)statistics for this region.The PBP statistics(stat PBPs)are screened by mutual information(MI)method.The training method is based on a linear discriminant analysis(LDA)classier whichnds the most simplied linear combination from these stat PBPs and the accuracy remains constant to characterize the specic microstructural feature quantitatively in cervical squamous epithelium.We present results from 37 clinical patients with analysis regions of cervical squamous epithelium.The accuracy of PFP for recognizing HSIL and CSCC was 83.8%and 87.5%,respectively.This work demonstrates the ability of PFP to quantitatively charac-terize the cervical squamous epithelial lesions in the H&E pathological sections.Signicance:Polarization detection technology provides an effcient method for digital pathological diagnosis and points out a new way for automatic screening of pathological sections. | Anli Hou Xingjian Wang Yujuan Fan Wenbin Miao Yang Dong Xuewu Tian Jibin Zou Hui Ma | 2022 | Journal of Innovative Optical Health Sciences2022,15,1: | 0 |
| 10 | Synthesis and Immobilization of Polystyrene-b-Polyvinyltriethoxysilane Micelles显示文摘Diblock copolymers polystyrene-block-polyvinyltriethoxysilane(PS-b-PVTES) were synthesized via atom transfer radical polymerization(ATRP), which self-assembled into spherical micelles in solvent of THF-methanol mixtures. The self-assembled micelles were immobilized by cross-linking reaction of VTES in a shell layer of micelles. The chemical structures of block copolymers and morphology of micelles were characterized in detail. It was found that the size of immobilized micelles was strongly affected by the copolymer concentration, composition of mixture solvent, and block ratios. | 朱赛赛 ZHU Hui 夏茹 FENG Xiaoshuang CHEN Peng QIAN Jiasheng CAO Ming YANG Bin MIAO Jibin SU Lifen SONG Changjiang | 2018 | Journal of Wuhan University of Technology(Materials Science)2018,33,1: | 0 |
| 11 | Preparation and Mechanical and Thermal Properties of Chlorinated Polyethylene Reinforced Polypropylene Foam显示文摘The foamed polypropylene(PP) with excellent mechanical and thermal insulating properties was reinforced by blending chlorinated polyethylene(CPE), followed by compression molding foaming in cross-link. The effects of CPE on the foaming behavior, thermal and mechanical properties of the foamed PP were studied by the measurements of density, thermal conductivity, Vicat softening temperature, tensile strength, impact strength and SEM. The results showed that the foamed PP got the best properties when the weight ratio of CPE/PP was 20 wt%. The density of the obtained foamed PP was as low as 0.37 g/cm^3, the impact strength was 16.5 kJ/m^2, the tensile strength was 17.7 MPa, the thermal conductivity was 0.035 W/(m·K), and the Vicat softening temperature was 112 ℃. | 张伟 夏茹 苏丽芬 RUAN Fang ZHENG Zhengzhi MIAO Jibin YANG Bin QIAN Jiasheng | 2018 | Journal of Wuhan University of Technology(Materials Science)2018,33,2: | 0 |