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| 1 | The Characteristics, Motivations and Organizational Outcomes of Collective Turnover in China: An Analysis of 65 Collective Turnover Events显示文摘这份报纸分析从 2000 年发生了到 2011 的 65 个有影响的集体周转事件。首先发现是集体周转是最可能的发生在部的水平因为在一样的部门的职员趋于更容易到达集体一致。第二发现是集体周转更经常发生在象它那样的工业,零卖并且银行。第三发现是集体周转经常以经理的周转开始在部或高级。与集体周转的进一步的探索,我们注意到机构的环境在瓷器经济转变期间是集体周转,和不适当的管理政策上的外部限制是内部开车因素。我们也发现动机在组织在不同层次为雇员变化。最后,我们断定集体周转的组织上的结果是不仅与象经验应该也被考虑的相对周转比率,出现频率,雇员类型,等级和工作那样的集体周转的周转,而是优秀因素的绝对水平连接了。 | Changhong Ni Rensun Ye Mingxing Ke Yin Wu | 2015 | Frontiers of Business Research in China2015,9,1: | 4 |
| 2 | Highly active N-doped carbon encapsulated Pd-Fe intermetallic nanoparticles for the oxygen reduction reaction显示文摘Developing highly efficient non-R catalysts for fuel cells and metal-air batteries is highly desirable but still challenging due to the sluggish oxygen reduction reaction(ORR).Herein,a facile and efficient strategy is demonstrated to prepare N-doped carbon encapsulated ordered Pd-Fe intermetallic(O-Pd-Fe@NC/C)nanoparticles via a one-step thermal annealing method.The obtained O-Pd-Fe@NC/C nanoparticles show enhanced ORR activity,durability and anti-poisoning capacity in both acid and alkaline medium.When O-Pd-Fe@NC/C serving as cathode catalyst for Zn-air battery,it exhibits higher voltage platform and superior cycling performance with respect to the Zn-air battery based on the mixture of Pt/C and Ir/C catalysts.The enhanced electrocatalytic performance can be ascribed to the formation of face-centered tetragonal(fct)Pd-Fe nanoparticles,the protective action of the N-doped carbon layer and the interface confinement effect between them.The in situ formed N-doped carbon shell not only restrains the Pd-Fe ordered intermetallics from aggregating effectively during the thermal annealing process,but also provides a strong anchoring effect to avoid the detachment of Pd-Fe nanoparticles from the carbon support during the potential cycling.This facile carbon encapsulation strategy may also be extended to the preparation of a wide variety of N-doped carbon encapsulated intermetallic compounds for fuel cell application. | Yezhou Hu Yun Lu Xueru Zhao Tao Shen Tonghui Zhao Mingxing Gong Ke Chen Chenglong Lai Jian Zhang Huolin L.Xin Deli Wang | 2020 | Nano Research2020,13,9: | 3 |
| 3 | Reflections on the Catastrophic 2020 Yangtze River Basin Flooding in Southern China显示文摘During the summer of 2020,southern China suffered from catastrophic flooding,the massive basin flood mainly occurred in the Yangtze River's middle and lower reaches.As of July 20,2020,the cumulative precipitation since the rain season started exceeded 500 mm over most of the Yangtze River Basin,reaching>1,200 mm in some areas of the lower reaches,exceeding the same period in 1998,the severest flood year in the past 60 years.Several water gauge stations at Poyang Lake and Chaohu Lake exceeded their historical record values.The water levels in the Wuhan section of the Yangtze River were among the highest ever recorded.As of July 22,2020,45.5 million people had been affected by the floods,with 142 people having died or were missing,and the direct economic losses expected to be around 116 billion RMB(~16.5 billion US dollars).However,the losses from this flood are much lower than those of previous major floods.For example,the catastrophic 1998 flooding led to 1,526 deaths and economic losses of 255 billion RMB(~36.4 billion US dollars).The reasons behind this are worthy of further study and discussion,and may be used for reference in the future and for other countries. | Ke Wei Chaojun Ouyang Hongtao Duan Yunliang Li Mingxing Chen Jiao Ma Huicong An Shu Zhou | 2020 | The Innovation2020,1,2: | 2 |
| 4 | Diagnostic Value of Transthoracic Echocardiography for Patent Foramen Ovale: A Meta-analysis显示文摘 | Pingping Ren Ke Li Xiaofang Lu Mingxing Xie | 2013 | Ultrasound in Medicine & Biology2013,,: | 1 |
| 5 | Targeted mechanical forces enhance the effects of tumor immunotherapy by regulating immune cells in the tumor microenvironment显示文摘Mechanical forces in the tumor microenvironment(TME)are associated with tumor growth,proliferation,and drug resistance.Strong mechanical forces in tumors alter the metabolism and behavior of cancer cells,thus promoting tumor progression and metastasis.Mechanical signals are transformed into biochemical signals,which activate tumorigenic signaling pathways through mechanical transduction.Cancer immunotherapy has recently made exciting progress,ushering in a new era of“chemo-free”treatments.However,immunotherapy has not achieved satisfactory results in a variety of tumors,because of the complex tumor microenvironment.Herein,we discuss the effects of mechanical forces on the tumor immune microenvironment and highlight emerging therapeutic strategies for targeting mechanical forces in immunotherapy. | Pengfei Zhu Hongrui Lu Mingxing Wang Ke Chen Zheling Chen Liu Yang | 2023 | Cancer Biology & Medicine2023,20,1: | 1 |
| 6 | ANCIENT WATERWAYS, BEAUTIFUL SCENERY显示文摘Rivers,lakes and oceans have aliways been the cradle flife.Even today,peoplestil have an inseparable connection to water.Perhaps for this reason,the hydrological status of a region's rivers and lakes has become the main criterion for that location's overall environmental quality.Rivers and lakes also represent basic and strategic resources for the survival and development of a city. | Rebecca Lou Feng Yongguo(Photos) Ma Ke(Photos) Sang Yi(Photos) XiuYuchen(Photos) Yang Cheng(Photos) Zheng He(Photos) Zhou Mingxing(Photos) Zhou Shijie(Photos) | 2021 | Beijing2021,,4: | 0 |
| 7 | Molybdenum-doped titanium dioxide supported low-Pt electrocatalyst for highly efficient and stable hydrogen evolution reaction显示文摘The Platinum(Pt)-based catalysts exhibit excellent catalytic performance for the hydrogen evolution reaction(HER) while suffering from poor stability due to the weak interaction between the carbon support and Pt.Herein,a molybdenum-doped titanium dioxide(Ti_(0.9)Mo_(0.1)O_(2)) supported low-Pt electrocatalyst with stronger interaction between catalyst and support is applied to tune the electrocatalytic performance of Pt.The Ti_(0.9)Mo_(0.1)O_(2) support can not only tolerate the corrosion environment in the catalytic system,but also generate strong metal-support inte raction(SMSI) between the oxide and catalyst.A facile solvothermal method is used to prepareTi_(0.9)Mo_(0.1)O_(2) as support to anchor Pt nanoparticles.The 5% Pt supported on Ti_(0.9)Mo_(0.1)O_(2) catalyst exhibits 4.4-fold mass activity(MA) at an overpotential of 50 mV and higher stability than 20% Pt/C with only 1/4 Pt loading.The SMSI between the Ti_(0.9)Mo_(0.1)O_(2) and Pt prevents the Pt aggregation to achieve excellent stability,and hydrogen spillover effect in the interface between Pt and support benefits the hydrogen production process.This work presents a novel sight for the fabrication and design of oxide supported catalysts in various catalytic system by reasonably employing support effect. | Ke Chen Shaofeng Deng Yun Lu Mingxing Gong Yezhou Hu Tonghui Zhao Tao Shen Deli Wang | 2021 | Chinese Chemical Letters2021,32,2: | 0 |
| 8 | Users'experience matter:Delay sensitivity-aware computation offloading in mobile edge computing显示文摘As a promising computing paradigm,Mobile Edge Computing(MEC)provides communication and computing capability at the edge of the network to address the concerns of massive computation requirements,constrained battery capacity and limited bandwidth of the Internet of Things(IoT)systems.Most existing works on mobile edge task ignores the delay sensitivities,which may lead to the degraded utility of computation offloading and dissatisfied users.In this paper,we study the delay sensitivity-aware computation offloading by jointly considering both user's tolerance towards delay of task execution and the network status under computation and communication constraints.Specifically,we use a specific multi-user and multi-server MEC system to define the latency sensitivity of task offloading based on the analysis of delay distribution of task categories.Then,we propose a scoring mechanism to evaluate the sensitivity-dependent utility of task execution and devise a Centralized Iterative Redirection Offloading(CIRO)algorithm to collect all information in the MEC system.By starting with an initial offloading strategy,the CIRO algorithm enables IoT devices to cooperate and iteratively redirect task offloading decisions to optimize the offloading strategy until it converges.Extensive simulation results show that our method can significantly improve the utility of computation offloading in MEC systems and has lower time complexity than existing algorithms. | Mingzhi Wang Tao Wu Tao Ma Xiaochen Fan Mingxing Ke | 2022 | Digital Communications and Networks2022,8,6: | 0 |