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| 1 | Petrogenesis and tectonic implications of early Paleozoic granitoids in East Kunlun belt: Evidences from geochronology, geochemistry and isotopes显示文摘The East Kunlun Orogenic Belt(EKOB) provides an important link to reconstruct the evolution of the Proto-Tethys and Paleo-Tethys realm. The EKOB is marked by widespread Early Paleozoic magmatism.Here we report the petrology, bulk geochemistry, zircon Ue Pb dating and, Lue Hf and SreN d isotopic data of the Early Paleozoic granitic rocks in Zhiyu area of the southern EKOB. Based on the zircon U-Pb dating, these granitoids, consisting of diorite, granodiorite and monzogranite, were formed during 450 -430 Ma the Late Ordovician to Middle Silurian. The diorite and granodiorite are high Sr/Y ratio as adakitic affinities, and the monzogranite belongs to highly fractionated I-type. Their(^(87)Sr/^(86)Sr)ivalues range from 0.7059 to 0.7085, εNd(t) values from -1.6 to -6.0 and the zircon εHf(t) values show large variations from +9.1 to -8.6 with Hf model ages(T_(DM2)) about 848 Ma and 1970 Ma. The large variations of whole-rock Nd and zircon Hf isotopes demonstrate strong isotopic heterogeneity of the source regions which probably resulted from multi-phase underplating of mantle-derived magmas. Geochemical and isotopic studies proved that the diorite and granodiorite had been derived from partial melting of heterogeneous crustal source with variable contributions from ancient continental crust and juvenile components, and the monzogranites were representing fractional crystallization and crustal contamination for arc magma. The Early Paleozoic adakitic rocks and high-K calc-alkaline granitoids in the southern EKOB were likely emplaced in a continental marginal arc setting possibly linked to the southwards subduction of the Paleo Kunlun Ocean and the magma generation is linked to partial melting of thickened continental crust induced by underplating of mantle-derived magmas. | Guochen Dong Mingfei Luo Xuanxue Mo Zhidan Zhao Liangqiong Dong Xuehui Yu Xin Wang Xiaowei Li Xiongfei Huang Yanbin Liu | 2018 | Geoscience Frontiers2018,9,5: | 10 |
| 2 | Research on TDM approach of sharing BRT-lane supported by vehicle-infrastructure integration显示文摘In order to increase the availability of the part-time idle bus rapid transit lane(BRT-lane),a time division multiplexing(TDM) method to share BRT-lane with the vehicles besides BRT buses is proposed based on vehicle-road collaboration. The TDM control strategy is established under the circumstance of vehicle-infrastructure integration(VII). The algorithm is given to forecast the segmented BRT travel time. According to the real time traffic information,a comprehensive model is given to estimate the vehicles' lane-changing time from/to the BRTlane to/from its neighbor lane and determine the timing sequence for vehicles collaboration. Finally,the experiment demonstrates that the predicted value of the travel time and lane-changing time is much close to the true value. The control strategy of the vehicles collaboration could promise the non-BRT vehicles to share BRT-lane without disturbing BRT's priority. | Dong Hongzhao Ling Yue Liu Dongxu Guo Mingfei | 2013 | Engineering Sciences2013,11,5: | 2 |
| 3 | 2020 Roadmap on two-dimensional nanomaterials for environmental catalysis显示文摘Environmental catalysis has drawn a great deal ofattention due to its clean ways to produce useful chemicals or carry out some chemical processes.Photocatalysis and electrocatalysis play important roles in these fields.They can decompose and remove organic pollutants from the aqueous environment,and prepare some fine chemicals.Moreover,they also can carry out some important reactions,such as 02 reduction reaction(ORR),O2 evolution reaction(OER),H2 evolution reaction(HER),CO2 reduction reaction(C02 RR),and N2 fixation(NRR).For catalytic reactions,it is the key to develop high-performance catalysts to meet the demand fortargeted reactions.In recentyears,two-dimensional(2 D) materials have attracted great interest in environmental catalysis due to their unique layered structures,which offer us to make use of their electronic and structural characteristics.Great progress has been made so far,including graphene,black phosphorus,oxides,layered double hydroxides(LDHs),chalcogenides,bismuth-based layered compounds,MXenes,metal organic frameworks(MOFs),covalent organic frameworks(COFs),and others.This content drives us to invite many famous groups in these fields to write the roadmap on two-dimensional nanomaterials for environmental catalysis.We hope that this roadmap can give the useful guidance to researchers in future researches,and provide the research directions. | Yulu Yang Mingguang Wu Xingwang Zhu Hui Xu Si Ma Yongfeng Zhi Hong Xia Xiaoming Liu Jun Pan Jie-Yinn Tang Siang-Piao Chai Leonardo Palmisano Francesco Parrino Junli Liu Jianzhong Ma Ze-Lin Wang Ling Tan Yu-Fei Zhao Yu-Fei Song Pardeep Singh Pankaj Raizada Deli Jiang Di Li R.A.Geioushy Jizhen Ma Jintao Zhang Song Hu Rongjuan Feng Gang Liu Minghua Liu Zhenhua Li Mingfei Shao Neng Li Jiahe Peng Wee-Jun Ong Nikolay Kornienko Zhenyu Xing Xiujun Fan Jianmin Ma | 2019 | Chinese Chemical Letters2019,30,12: | 2 |
| 4 | Adsorption behavior of methylene blue on halloysite nanotubes显示文摘 | Mingfei Zhao Peng Liu | 2007 | Microporous and Mesoporous Materials2007,,1: | 2 |
| 5 | Novel hemostatic agents based on gelatin-microbial transglutaminase mix显示文摘Hemostasis is a major challenge in surgical procedures and traumas. Conventional hemostatic methods have limited efficacy and may cause additional tissue damage. In this study, we designed a novel hemostatic agent based on the in situ gel formation of gelatin cross-linked by a novel microbial transglutaminase(mTGase), in which the amino acid sequences differed from commercial mTGases. The new hemostatic agent showed the same biochemical crosslinking chemistry as the final stages of the blood coagulation cascade while using gelatin as a 'structural' protein(rather than fibrin) and a calcium-independent mTGase as the crosslinking catalyst(rather than factor XIIIa). In rat liver hemostasis models, the hemostatic agent not only showed a similar hemostatic effect as that of SURGIFLO~(positive control), but also stronger adhesion strength and elasticity than SURGIFLO~.Therefore, this biomimetic gelatin-mTGase mix hemostatic is a novel and effective surgical sealant. | Fang Lv Xiaonan Cong Wenshu Tang Yiming Han Yu Tang Yongrui Liu Liqiang Su Mingyao Liu Mingfei Jin Zhengfang Yi | 2017 | Science China(Life Sciences)2017,60,4: | 2 |
| 6 | Electrosynthesis of hierarchical NiLa-layered double hydroxide electrode for efficient oxygen evolution reaction显示文摘Oxygen evolution reaction(OER) is a key process for electrochemical water splitting due to its intrinsic large overpotential. Recently, layered double hydroxides(LDHs), especially Ni Fe-LDH, have been regarded as highly performed electrocatalysts for OER in alkaline condition. Here we first present a new class of Ni La-LDH electrocatalyst synthesized by an electrochemical process for efficient water splitting. The as-prepared NiL a-LDH nanosheet arrays(NSAs) give remarkable electrochemical activity and durability under alkaline environments, with a low overpotential of 209 mV for OER to deliver a current density of 10 mA cm^-2, surpassing most of previous reported LDHs eletrocatalysts. The presence of NiLa-LDH in this work extends the studies about LDHs-based electrocatalysts, which will benefit the development of electrochemical energy storage and conversion systems. | Shan Jiang Yunke Liu Wenfu Xie Mingfei Shao | 2019 | Journal of Energy Chemistry2019,28,6: | 1 |
| 7 | Research on Electric Impedance Spectroscopy of Living Cell Suspensions by a Chip with Microelectrodes显示文摘A microfabricated electrical impedance spectroscopy (EIS) chip with microelectrodes was developed.The substrate and the electrodes of the chip were made of glass and gold,respectively.The experimental results demonstrated that the EIS-chip could distinguish different solutions (physiological saline,culture medium,living cell suspension etc.) by scanning from 10Hz to 45kHz.A 6-element circuit model was used for fitting the real part and the imaginary part admittance curves of the living cell suspension.An actual circuit was also built and tested to verify the 6-element circuit model proposed.The micro-EIS chip has several advantages including the use of small sample volumes,high resolution and ease of operation.It shows good application prospects in the areas of cellular electrophysioiogy,drug screening and bio-sensors etc. | Xing Yang Zhaoying Zhou Mingfei Xiao Ying Wu Shangfeng Liu | 2006 | 稀有金属材料与工程2006,35,A03: | 1 |
| 8 | Characterization of anti-endothelial cell antibodies in the patients with Systemic Lupus Erythematosus: a potential marker for disease activity显示文摘 | Li Jiann-Shyong Liu Mingfei Lei Huanyao | 1996 | Clin Immunol Immunopathol1996,79,: | 1 |
| 9 | LSM-infiltrated LSCF cathodes for solid oxide fuel cells显示文摘Mixed ionic-electronic conductors in the family of LaxSr1-x CoyFe1-yO3-δ have been widely studied as cathode materials for solid oxide fuel cells (SOFCs).However,the long-term stability was a concern.Here we report our findings on the effect of a thin film coating of La0.85Sr0.15 MnO3-δ (LSM) on the performance of a porous La0.6 Sr0.4 Co0.2 Fe0.8 O3-δ (LSCF) cathode.When the thicknesses of the LSM coatings are appropriate,an LSM-coated LSCF electrode showed better stability and lower polarization (or higher activity) than the blank LSCF cathode without LSM infiltration.An anode-supported cell with an LSM-infiltrated LSCF cathode demonstrated at 825℃ a peak power density of ~1.07 W/cm 2,about 24% higher than that of the same cell without LSM infiltration (~0.86 W/cm 2).Further,the LSM coating enhanced the stability of the electrode;there was little degradation in performance for the cell with an LSM-infiltrated LSCF cathode during 100 h operation. | Ze Liu Mingfei Liu Lei Yang Meilin Liu | 2013 | Journal of Energy Chemistry2013,22,4: | 1 |
| 10 | Production of multi-walled carbon nanotube/poly(aminoamide) dendrimer hybrid and its application to piezoelectric immunosensing for metolcarb显示文摘 | Mingfei Pan Lingjie Kong Bing Liu Kun Qian Guozhen Fang Shuo Wang | 2013 | Sensors & Actuators: B Chemical2013,,: | 1 |
| 11 | 显示文摘 | Liu Mingfei Dong Dehua Chen Lei | 2008 | Power Sources2008,176,: | 1 |
| 12 | Effects of neoadjuvant chemotherapy on bulky cervical cancer in early stage clinical analysis 显示文摘 | Guan Mingfei Huang Liu Jihong | 2008 | Chinese Journal of climcal obstetrics and Gynecology2008,12,03: | 1 |
| 13 | Data augmentation in microscopic images for material data mining显示文摘Recent progress in material data mining has been driven by high-capacity models trained on large datasets.However,collecting experimental data(real data)has been extremely costly owing to the amount of human effort and expertise required.Here,we develop a novel transfer learning strategy to address problems of small or insufficient data.This strategy realizes the fusion of real and simulated data and the augmentation of training data in a data mining procedure.For a specific task of grain instance image segmentation,this strategy aims to generate synthetic data by fusing the images obtained from simulating the physical mechanism of grain formation and the“image style”information in real images.The results show that the model trained with the acquired synthetic data and only 35%of the real data can already achieve competitive segmentation performance of a model trained on all of the real data.Because the time required to perform grain simulation and to generate synthetic data are almost negligible as compared to the effort for obtaining real data,our proposed strategy is able to exploit the strong prediction power of deep learning without significantly increasing the experimental burden of training data preparation. | Boyuan Ma Xiaoyan Wei Chuni Liu Xiaojuan Ban Haiyou Huang Hao Wang Weihua Xue Stephen Wu Mingfei Gao Qing Shen Michele Mukeshimana Adnan Omer Abuassba Haokai Shen Yanjing Su | 2020 | npj Computational Materials2020,,1: | 1 |
| 14 | Simultaneous Optimization of Efficiency,Stretchability,and Stability in All-Polymer Solar Cells via Aggregation Control显示文摘With the emergence of Y-series small molecule acceptors,polymerizing the small molecule acceptors with aromatic linker units has attracted significant research attention,which has greatly advanced the photovoltaic performance of all-polymer solar cells.Despite the rapid increase in efficiency,the unique characteristics(e.g.,mechanical stretchability and flexibility)of all-polymer systems were still not thoroughly explored.In this work,we demonstrate an effective approach to simultaneously improve device performance,stability,and mechanical robustness of all-polymer solar cells by properly suppressing the aggregation and crystallization behaviors of polymerized Y-series acceptors.Strikingly,when introducing 50 wt%PYF-IT(a fluorinated version of PY-IT)into the well-known PM6:PY-IT system,the all-polymer devices delivered an impressive photovoltaic efficiency of 16.6%,significantly higher than that of the control binary cell(15.0%).Compared with the two binary systems,the optimal ternary blend exhibits more efficient charge separation and balanced charge transport accompanying with less recombination.Moreover,a high-performance 1.0 cm^(2)large-area device of 15%efficiency was demonstrated for the optimized ternary all-polymer blend,which offered a desirable PCE of 14.5%on flexible substrates and improved mechanical flexibility after bending 1000 cycles.Notably,these are among the best results for 1.0 cm^(2)all-polymer OPVs thus far.This work also heralds a bright future of all-polymer systems for flexible wearable energy-harvesting applications. | Kaihu Xian Kangkang Zhou Mingfei Li Junwei Liu Yaowen Zhang Tao Zhang Yong Cui Wenchao Zhao Chunming Yang Jianhui Hou Yanhou Geng Long Ye | 2023 | Chinese Journal of Chemistry2023,41,2: | 1 |
| 15 | La 0.6 Sr 0.4 Co 0.2 Fe 0.8 O 3? δ cathodes infiltrated with samarium-doped cerium oxide for solid oxide fuel cells显示文摘 | Lifang Nie Mingfei Liu Yujun Zhang Meilin Liu | 2010 | Journal of Power Sources2010,,15: | 1 |
| 16 | Simplified transient isotachophoresis/capillary gel electrophoresis method for highly sensitive analysis of polymerase chain reaction samples on a microchip with laserinduced fluorescence detection显示文摘 | Liu Dayu Ou Ziyou Xu Mingfei | 2008 | Journal of Chromatography A2008,1214,12: | 1 |
| 17 | High sintering ability and electrical conductivity of Zn doped La(Ca)CrO 3 based interconnect ceramics for SOFCs显示文摘 | Mingfei Liu Ling zhao Dehua Dong Songlin Wang Juan Diwu Xingqin Liu Guangyao Meng | 2007 | Journal of Power Sources2007,,2: | 1 |
| 18 | Novel ampero- metric sensor using metolcarb-imprinted film as the recog- nition element on a gold electrode and its application显示文摘 | Pan Mingfei Fang Guozhen Bing Liu | 2011 | Analytica Chimica Acta2011,690,2: | 1 |
| 19 | Silver nanopartiele supported on halloysite nanotubes catalyzed reduction of 4-nitrophenol (4-NP)显示文摘 | LIU Peng ZHAO Mingfei | | 0,,07: | 1 |
| 20 | Reactive resonance and the role of electron angular momentum显示文摘Understanding the reaction mechanism at the atomic and molecular level is a central task of chemistry.Within the Born-Oppenheimer approximation,a chemical reaction is envisioned as nuclear dynamics evolving from reactants to products on a potential energy surface(PES).To reveal the detailed mechanistic origin of such an old bond-breaking and new bond-forming process,a measurement of state-to-state differential cross-sections(DCSs)is essential.Its fine structure often serves as a fingerprint to identify quantum dynamics phenomena in a bimolecular reactive encounter.Observation of these fine structures is,however,difficult,because the interference feature may appear in the state-to-state DCSs only with very high angular resolution。 | Mingfei Zhou Kopin Liu | 2021 | The Innovation2021,2,3: | 0 |