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| 1 | Oxygen‑Defect Enhanced Anion Adsorption Energy Toward Super‑Rate and Durable Cathode for Ni–Zn Batteries显示文摘The alkaline zinc-based batteries with high energy density are becoming a research hotspot.However,the poor cycle stability and low-rate performance limit their wide application.Herein,ultra-thin CoNiO2 nanosheet with rich oxygen defects anchored on the vertically arranged Ni nanotube arrays(Od-CNO@Ni NTs)is used as a positive material for rechargeable alkaline Ni–Zn batteries.As the highly uniform Ni nanotube arrays provide a fast electron/ion transport path and abundant active sites,the Od-CNO@Ni NTs electrode delivers excellent capacity(432.7 mAh g^(−1))and rate capability(218.3 mAh g^(−1) at 60 A g^(−1)).Moreover,our Od-CNO@Ni NTs//Zn battery is capable of an ultra-long lifespan(93.0%of initial capacity after 5000 cycles),extremely high energy density of 547.5 Wh kg^(−1) and power density of 92.9 kW kg^(−1)(based on the mass of cathode active substance).Meanwhile,the theoretical calculations reveal that the oxygen defects can enhance the interaction between electrode surface and electrolyte ions,contributing to higher capacity.This work opens a reasonable idea for the development of ultra-durable,ultra-fast,and high-energy Ni–Zn battery. | Jia Yao Houzhao Wan Chi Chen Jie Ji Nengze Wang Zhaohan Zheng Jinxia Duan Xunying Wang Guokun Ma Li Tao Hanbin Wang Jun Zhang Hao Wang | 2021 | Nano-Micro Letters2021,13,11: | 2 |
| 2 | Cigarette smoke‑induced malignant transformation via STAT3 signalling in pulmonary epithelial cells in a lung‑on‑a‑chip model显示文摘Background Chronic obstructive pulmonary disease(COPD)is a severe public health problem.Cigarette smoke(CS)is a risk factor for COPD and lung cancer.The underlying molecular mechanisms of CS-induced malignant transformation of bronchial epithelial cells remain unclear.In this study,we describe a lung-on-a-chip to explore the possible mechanistic link between cigarette smoke extract(CSE)-associated COPD and lung cancer.Methods An in vitro lung-on-a-chip model was used to simulate pulmonary epithelial cells and vascular endothelial cells with CSE.The levels of IL-6 and TNF-αwere tested as indicators of inflammation using an enzyme-linked immune sorbent assay.Apical junction complex mRNA expression was detected with qRT-PCR as the index of epithelial-to-mesenchymal transition(EMT).The effects of CSE on the phosphorylation of signal transduction and transcriptional activator 3(STAT3)were detected by Western blotting.Flow cytometry was performed to investigate the effects of this proto-oncogene on cell cycle distribution.Results Inflammation caused by CSE was achieved in a lung-on-a-chip model with a mimetic movement.CSE exposure induced the degradation of intercellular connections and triggered the EMT process.CSE exposure also activated the phosphorylation of proto-oncogene STAT3,while these effects were inhibited with HJC0152.Conclusions CSE exposure in the lung-on-a-chip model caused activation of STAT3 in epithelial cells and endothelial cells.HJC0152,an inhibitor of activated STAT3,could be a potential treatment for CS-associated COPD and lung cancer. | Wei Hou Siyi Hu Ken‑tye Yong Jie Zhang Hanbin Ma | 2020 | Bio-Design and Manufacturing2020,3,4: | 1 |
| 3 | Progress and development directions of shale oil reservoir stimulation technology of China National Petroleum Corporation显示文摘By reviewing the development history of shale oil reservoir stimulation technology of PetroChina Company Limited(PetroChina),we have systematically summarized the main progress of shale oil reservoir stimulation technology of CNPC in five aspects:reservoir stimulation mechanism,fracture-controlled fracturing,geological-engineering integrated reservoir stimulation design platform,low-cost materials,and large well-pad three-dimensional development mode.It is made clear that the major stimulation technology for shale oil reservoir is the high density multi-cluster and fracture-controlled staged fracturing aiming to increase fracture-controlled reserves,lower operation costs and increase economic benefits.Based on comprehensive analysis of the challenges shale oil reservoir stimulation technology faces in three-dimensional development,stimulation parameter optimization for fracture-controlled fracturing,refracturing and low-cost stimulation technology,we proposed five development directions of the stimulation technology:(1)Strengthen the research on integration of geology and engineering to make full use of reservoir stimulation.(2)Deepen the study on fracture-controlled fracturing to improve reserves development degree.(3)Promote horizontal well three-dimensional development of shale oil to realize the production of multiple layers vertically.(4)Research refracturing technology of shale oil reservoir through horizontal well to efficiently tap the remaining reserves between fractures.(5)Develop low-cost stimulation supporting technology to help reduce the cost and increase economic benefit of oilfield development. | LEI Qun WENG Dingwei XIONG Shengchun LIU Hanbin GUAN Baoshan DENG Qjang YAN Xuemei LIANG Hongbo MA Zeyuan | 2021 | Petroleum Exploration and Development2021,48,5: | 1 |
| 4 | Wavelet Analysis for Tunneling-Induced Ground Settlement Based on a Stochastic Model 显示文摘 | DING Lieyun MA Ling LUO Hanbin | 2011 | Tunnelling and Underground Space Technology2011,26,5: | 1 |
| 5 | Wavelet prediction method for ground deformation induced by tunneling显示文摘 | Jian Guo Lieyun Ding Hanbin Luo Cheng Zhou Ling Ma | 2014 | Tunnelling and Underground Space Technology incorporating Trenchless Technology Research2014,,: | 1 |
| 6 | Wavelet Analysis for tunneling-induced ground settlement based on a stochastic model显示文摘 | Lieyun Ding Ling Ma Hanbin Luo Minghui Yu Xianguo Wu | 2011 | Tunnelling and Underground Space Technology incorporating Trenchless Technology Research2011,,5: | 1 |
| 7 | Non-linear description of ground settlement over twin turmels in soil 显示文摘 | Ling MA Lieyun DING Hanbin LUO | 2014 | Tunnelling and Underground Space Technology2014,,42: | 1 |
| 8 | Wavelet a- nalysis for tunneling-induced ground settlement based on a stochastic model 显示文摘 | Ding Lieyun Ma Ling Luo Hanbin | 2011 | Tunnelling and Under- ground Space Technology2011,26,5: | 1 |
| 9 | Maternal Preconception Serum Alanine Aminotransferase Levels and Risk of Preterm Birth among Reproductive-Aged Women—China,2013-2017显示文摘Summary What is already known about this topic?The significance of maternal liver health concerning preterm birth(PTB)is well recognized;however,there is a gap in understanding the precise influence of preconception serum alanine aminotransferase(ALT)levels on the risk of PTB.What is added by this report? | Chuanyu Zhao Jiajing Jia Hanbin Wu Qin Xu Xinyi Lyu Meiya Liu Xuan Hu Jueming Lei Yuzhi Deng Yuan He Yuanyuan Wang Zuoqi Peng Ya Zhang Hongguang Zhang Qiaomei Wang Haiping Shen Yiping Zhang Donghai Yan Ying Yang Xu Ma | 2024 | China CDC weekly2024,6,10: | 0 |
| 10 | Promoting Proton Migration Kinetics by Ni^(2+)Regulating Enables Improved Aqueous Zn-MnO_(2) Batteries显示文摘The energy storage behaviors of MnO_(2) for aqueous Zn-MnO_(2) batteries mainly depend on the Zn^(2+)/H^(+)intercalation but are limited by poor ion/electron migration dynamics and stability.Herein,a strategy is proposed that promoting proton migration kinetics ameliorates H^(+)storage activity by introducing Ni^(2+)intoγ-MnO_(2)(Ni-MnO_(2)).Ni^(2+)can lower the diffusion barrier of H^(+)and selectively induce the ion intercalation,thereby alleviating the electrostatic interaction with the lattice.Moreover,Ni^(2+)enables the adjacent[MnO6]octahedrons to have better electron conductivity.The Ni-MnO_(2) exhibits superior rate performance(nearly four times specific capacity compared with MnO_(2))and ultra-long-cycle stability(100%of capacity retention after 11000 cycles at 3.0 A g^(-1)).The calculation indicates that the Ni-MnO_(2) allows H^(+)migrate rapidly along the one-dimensional tunnel due to reduction of the activation energy caused by Ni^(2+)regulating,thus achieving excellent reaction kinetics.This work brings great potential for the development of high-performance aqueous Zn-MnO_(2) batteries. | Jie Ji Jia Yao Yongchang Xu Houzhao Wan Bao Zhang Lin Lv Jingying Li Nengze Wang Zhaohan Zheng Jun Zhang Guokun Ma Li Tao Hanbin Wang Yi Wang Hao Wang | 2023 | Energy & Environmental Materials2023,6,2: | 0 |
| 11 | Ultrasensitive,flexible perovskite nanowire photodetectors with long-term stability exceeding 5000 h显示文摘Photodetectors(PDs)based on perovskite nanowires are among the most promising next-generation photodetection technologies;however,their poor long-term stability is the biggest challenge limiting their commercial applica-tion.Herein,an ionic liquid,1-butyl-3 methylimidazolium tetrafuoroborate(BMIMBF_(4)),is incorporated as an additive into methylammonium lead tri-iodide(MAPbI_(3))nanowires;this not only effectively passivates defects to inhibit perovskite degradation but also leads to the formation of nanochannels,enabling fast charge transfer.As a result,the long-term stability and perfor-mance of MAPbI_(3)nanowires are considerably improved.The detectivity,linear detection range,and noise equivalent power of the MA PbI_(3)nanowire PD reach 2.06×10^(13)Jones,160dB,and 1.38×10^(-15)W Hz-^(1/2),respectively,compara-ble to the highest performance of perovskite nanowire PDs reported to date.Moreover,the unencapsulated PD can maintain 100%of its initial performance after being exposed to an open-air environment for more than 5000 h,esta-blishing it as the most stable perovskite nanowire PD reported to date.Nota-bly,the PD exhibits improved diffuse reflection imaging ability when compared with commercial silicon photodiode S2386.This study provides a new strategy for constructing sensitive,stable,and flexible perovskite PDs and will accelerate their commercial application in the future. | Dingjun Wu Yongchang Xu Hai Zhou Xin Feng Jianqiang Zhang Xiyan Pan Zheng Gao Rui Wang Guokun Ma Li Tao Hanbin Wang Jinxia Duan Houzhao Wan Jun Zhang Liangping Shen Hao Wang Tianyou Zhai | 2022 | InfoMat2022,4,9: | 0 |