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52篇 您的检索式:作者名="Juanjuan Sun"
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1Exotic origin of the Chinese continental shelf: new insights into the tectonic evolution of the western Pacific and eastern China since the Mesozoic显示文摘The effect of paleo-Pacific subduction on the geological evolution of the western Pacific and continental China is likely complex. Nevertheless, our analysis of the distribution of Mesozoic granitoids in the eastern continental China in space and time has led us to an interesting conclusion: The basement of the continental shelf beneath East and South China Seas may actually be of exotic origin geologically unrelated to the continental lithosphere of eastern China. By accepting the notion that the Jurassic–Cretaceous granitoids in the region are genetically associated with western Pacific subduction and the concept that subduction may cease to continue only if the trench is being jammed, then the termination of the granitoidmagmatism throughout the vast region at *88 ± 2 Ma manifests the likelihood of ‘‘sudden'', or shortly beforehand(*100 Ma), trench jam of the Mesozoic western Pacific subduction. Trench jam happens if the incoming‘‘plate'' or portion of the plate contains a sizeable mass that is too buoyant to subduct. The best candidate for such a buoyant and unsubductable mass is either an oceanic plateau or a micro-continent. We hypothesize that the basement of the Chinese continental shelf represents such an exotic, buoyant and unsubductable mass, rather than seaward extension of the continental lithosphere of eastern China. The locus of the jammed trench(i.e., the suture) is predictably located on the shelf in the vicinity of, and parallel to, the arc-curved coastal line of the southeast continental China. It is not straightforward to locate the locus in the northern section of the East China Sea shelf because of the more recent(\20 Ma) tectonic re-organization associated with the opening of the Sea of Japan. We predict that the trench jam at *100 Ma led to the re-orientation of the Pacific plate motion in the course of NNW direction as inferred from the age-progressive Emperor Seamount Chain of Hawaiian hotspot origin(its oldest unsubdued Meiji and Detroit seamounts are *82 Ma),making the boundary between the Pacific plate and the newly accreted plate of eastern Asia a transform fault at the location east of the continental shelf of exotic origin. This explains the apparent *40 Myr magmatic gap from *88to *50 Ma prior to present-day western Pacific subduction initiation. We propose that basement penetration drilling on well-chosen sites is needed to test the hypothesis in order to reveal the true nature of the Chinese continental shelf basement. This testing becomes critical and cannot longer be neglected in order to genuinely understand the tectonic evolution of the western Pacific and its effect on the geology of eastern China since the Mesozoic, includingthe cratonic lithosphere thinning, related magmatism/mineralization, and the mechanism of the subsequent South China Sea opening, while also offering novel perspectives on aspects of the plate tectonics theory. We also suggest the importance of future plate tectonic reconstruction of the western Pacific to consider the nature and histories of the Chinese continental shelf of exotic origin as well as the probable transform plate boundary from *100 to*50 Ma. Effort is needed to reveal the true nature and origin of the *88 ± 2 Ma granitic gneisses in Taiwan and the 110–88 Ma granitoids on the Hainan Island.Yaoling Niu Yi Liu Qiqi Xue Fengli Shao Shuo Chen Meng Duan Pengyuan Guo Hongmei Gong Yan Hu Zhenxing Hu Juanjuan Kong Jiyong Li Jinju Liu Pu Sun Wenli Sun Lei Ye Yuanyuan Xiao Yu Zhang 2015Science Bulletin2015,60,18:32
2Recent Advances in Single-Atom Electrocatalysts for Oxygen Reduction Reaction显示文摘Oxygen reduction reaction(ORR)plays significant roles in electrochemical energy storage and conversion systems as well as clean synthesis of fine chemicals.However,the ORR process shows sluggish kinetics and requires platinum-group noble metal catalysts to accelerate the reaction.The high cost,rare reservation,and unsatisfied durability significantly impede large-scale commercialization of platinum-based catalysts.Single-atom electrocatalysts(SAECs)featuring with well-defined structure,high intrinsic activity,and maximum atom efficiency have emerged as a novel field in electrocatalytic science since it is promising to substitute expensive platinum-group noble metal catalysts.However,finely fabricating SAECs with uniform and highly dense active sites,fully maximizing the utilization efficiency of active sites,and maintaining the atomically isolated sites as single-atom centers under harsh electrocatalytic conditions remain urgent challenges.In this review,we summarized recent advances of SAECs in synthesis,characterization,oxygen reduction reaction(ORR)performance,and applications in ORR-related H_(2)O_(2)production,metal-air batteries,and low-temperature fuel cells.Relevant progress on tailoring the coordination structure of isolated metal centers by doping other metals or ligands,enriching the concentration of single-atom sites by increasing metal loadings,and engineering the porosity and electronic structure of the support by optimizing the mass and electron transport are also reviewed.Moreover,general strategies to synthesize SAECs with high metal loadings on practical scale are highlighted,the deep learning algorithm for rational design of SAECs is introduced,and theoretical understanding of active-site structures of SAECs is discussed as well.Perspectives on future directions and remaining challenges of SAECs are presented.Junxing Han Juanjuan Bian Chunwen Sun 2020Research2020,,1:6
3Triptolide suppresses pancreatic cancer cell proliferation by inhibiting hedgehog signaling pathway activity显示文摘Dear Editor,Pancreatic cancer (PCa) is a high-grade gastrointestinal malignancy more commonly occurring in elderly populations with lower than 5% overall 5-year survival rate (Hidalgo, 2010). PCa responds poorly to most chemotherapeutic agents, and therefore it is imperative to develop novel therapeutic agents that have anti-cancer activities against PCa.Juanjuan Feng Mingjin Rao Man Wang Lin Liang Zhi Chen Xiufeng Pang Weiqiang Lu Zhenliang Sun 2019Science China(Life Sciences)2019,62,10:6
4Hierarchical ferric-cobalt-nickel ternary oxide nanowire arrays supported on graphene fibers as high-performance electrodes for flexible asymmetric supercapacitors显示文摘基于纤维的 supercapacitors (FSC ) 是精力存储家庭的新成员。他们现在的优秀灵活性并且在小、灵活、便携的设备有有希望的应用。当保留灵活性时, FSC 的存在挑战之一正在提高他们的精力密度。我们开发了一个灵巧、划算的方法基于层次 ferric-cobalt-nickel 制作一个高度电容的积极电极第三的氧化物 nanowire arrays/graphene 纤维和一个否定电极基于导出 polyaniline 的碳 nanorods/graphene 纤维。漂亮微观结构和两个电极的优秀电气化学的表演使我们能构造 highperformance 灵活不对称的 graphene 有 1.4 V 的操作电压的基于纤维的 supercapacitor 设备,一个特定的电容直到 61.58 mF ??摔??圠敔????猯'T??????????????猯'T???????猯'T???Jingxin Zhao Chaowei Li Qichong Zhang Jun Zhang Xiaona Wang Juan Sun Juanjuan Wang Jixun Xie Ziyin Lin Zhuo Li Weibang Lu Conghua Lu Yagang Yao 2018Nano Research2018,11,4:3
5SRSF1 plays a critical role in invariant natural killer T cell development and function显示文摘Invariant natural killer T(iNKT)cells are highly conserved innate-like T lymphocytes that originate from CD4^(+)CD8^(+)double-positive(DP)thymocytes.Here,we report that serine/arginine splicing factor 1(SRSF1)intrinsically regulates iNKT cell development by directly targeting Myb and balancing the abundance of short and long isoforms.Conditional ablation of SRSF1 in DP cells led to a substantially diminished iNKT cell pool due to defects in proliferation,survival,and TCRαrearrangement.The transition from stage 0 to stage 1 of iNKT cells was substantially blocked,and the iNKT2 subset was notably diminished in SRSF1-deficient mice.SRSF1 deficiency resulted in aberrant expression of a series of regulators that are tightly correlated with iNKT cell development and iNKT2 differentiation,including Myb,PLZF,Gata3,ICOS,and CD5.In particular,we found that SRSF1 directly binds and regulates pre-mRNA alternative splicing of Myb and that the expression of the short isoform of Myb is substantially reduced in SRSF1-deficient DP and iNKT cells.Strikingly,ectopic expression of the Myb short isoform partially rectified the defects caused by ablation of SRSF1.Furthermore,we confirmed that the SRSF1-deficient mice exhibited resistance to acute liver injury uponα-GalCer and Con A induction.Our findings thus uncovered a previously unknown role of SRSF1 as an essential post-transcriptional regulator in iNKT cell development and functional differentiation,providing new clinical insights into iNKT-correlated disease.Jingjing Liu Menghao You Yingpeng Yao Ce Ji Zhao Wang Fang Wang Di Wang Zhihong Qi Guotao Yu Zhen Sun Wenhui Guo Juanjuan Liu Shumin Li Yipeng Jin Tianyan Zhao Hai-Hui Xue Yuanchao Xue Shuyang Yu 2021Cellular & Molecular Immunology2021,18,11:3
6Kinetic and thermodynamic effects of moisture content and temperature on the ammonia volatilization of soil fertilized with urea显示文摘The traditional qualitative analysis of the individual factors on the kinetic and thermodynamic parameters cannot sufficiently reveal the mechanism underlying ammonia volatilization in soil.This study aimed to determine the effects of temperature,moisture content,and their interaction on the kinetic and thermodynamic parameters,which revealed the key control mechanism underlying ammonia volatilization,modified the traditional Arrhenius model,and established a quantitative prediction model of cumulative NH_(3)-N loss(CNL).Laboratory culture experiments were conducted under different temperatures(T)(15℃,20℃,25℃and 35℃)and moisture contents(θ)(60%,80%,and 100%field capacities).Soil ammonia volatilization was also measured every 2 d.Results showed that the effects of individual factors and their interaction on the values of reaction rate(K_(N)),Activation free energy(ΔG),and activation entropy(ΔS)followed the descending order of T>θ>T·θ,whereas those of activation enthalpy(ΔH)and activation degree(lgN)followed the descending order ofθ>T>T·θ.The interaction showed significant effect on K_(N)value and insignificant effect on all the thermodynamic parameters.The effects of water and temperature were mainly observed during the preparatory stage and the most critical transition state stage of the chemical reaction,respectively.Given thatΔH>0,ΔG>0,andΔS>0,ammonia volatilization is found to be an endothermic reaction controlled by enthalpy.The new K_(N)(T)-2 model with the determination coefficient(R^(2))of 0.999 was more accurate than the traditional Arrhenius model with the R^(2)of 0.936.The new NH_(3)(T,θ)model with the mean absolute percentage error(MAPE)of 4.17%was more accurate than the traditional NH_(3)(T)model with the MAPE of 7.11%.These results supplemented the control mechanism underlying ammonia volatilization in soil fertilized with urea and improved the prediction accuracy of CNL.Lei Tao Guo Xianghong Ma Juanjuan Sun Xihuan Feng Yang Wang Hongyu 2017International Journal of Agricultural and Biological Engineering2017,10,6:2
7Synthesis and Properties of Functionalized Schiff Bases of 5α,10α-Di(4-hydroxylphenyl)calix[4]pyrrole and 5α,15β-Di(4-hydroxylphenyl)calix|4] pyrrole显示文摘HAN Ying SUN Juanjuan WANG Genliang YAN Chaoguo 2014Chemical Research in Chinese Universities2014,30,6:2
8Photocatalytic decarboxylative coupling between α-oxocarboxylicacids and alkenes显示文摘Photocatalytic decarboxylative cross-coupling which achieves the derivatization of widespread organic acids has become a hot topic in organic synthesis.As special acids,α-oxocarboxylicacids show the great potential in running decarboxylation to construct ketone derivatives.In this article,we have developed a photocatalytic decarboxylative cross-coupling ofα-oxocarboxylic acids and olefins to the synthesis of diverse aryl ketones.Various alkenes andα-oxocarboxylicacids were compatible,generating the desired products in up to 90%yield.Preliminary mechanism studies suggest that a free radical pathway is involved in this process.Ziyue Chen Fangling Lu Feng Yuan Juanjuan Sun Linyu Du Zhen Li Meng Gao Renyi Shi Aiwen Lei 2019Science China Chemistry2019,62,11:2
9Effective root depth and water uptake ability of winter wheat by using water stable isotopes in the Loess Plateau of China显示文摘A field experiment using PVC growth tubes was conducted in the Loess Plateau of China to determine the effective root depth(ERD)of winter wheat and its relationship with root distributions and soil water conditions.The water stable isotopes technique was used to estimate the water uptake contributions of different root depths during the growth stages.On the basis of IsoSource and the Romero-Saltos model,the ERD was 0-40 cm in the majority of the growth stage.However,in the heading and filling stages,the ERD could reach 60%-75%of the maximum root depth.Furthermore,the contributions to water uptake of different root depths were correlated with variations in soil water and root length density(r=0.395 and 0.368,respectively;p<0.05).However,by path analysis,the low decisive coefficient indicated that root distribution and soil water content did not always follow the same trend as water uptake.The conclusions of this study can help with understanding winter wheat water uptake mechanisms in arid and semi-arid regions and increasing water use efficiency.Wang Bing Zheng Lijian Ma Juanjuan Sun Xihuan Guo Xianghong Guo Fei 2016International Journal of Agricultural and Biological Engineering2016,9,6:2
10Studies on the enhancement of flue gas desulfurization with oxidation reaction 显示文摘Zhi Yongting Zheng Juanjuan Zhou Yaping Sun Yan Su Wei Zhou Li 2011Energy& Fuels2011,25,:1
11Metabolic regulation in the immune response to cancer显示文摘Metabolic reprogramming in tumor-immune interactions is emerging as a key factor affecting pro-inflammatory carcinogenic effects and anticancer immune responses.Therefore,dysregulated metabolites and their regulators affect both cancer progression and therapeutic response.Here,we describe the molecular mechanisms through which microenvironmental,systemic,and microbial metabolites potentially influence the host immune response to mediate malignant progression and therapeutic intervention.We summarized the primary interplaying factors that constitute metabolism,immunological reactions,and cancer with a focus on mechanistic aspects.Finally,we discussed the possibility of metabolic interventions at multiple levels to enhance the efficacy of immunotherapeutic and conventional approaches for future anticancer treatments.Qi Wu Xin Yu Juanjuan Li Shengrong Sun Yi Tu 2021Cancer Communications2021,41,8:1
12Pyruvate enhances M1 microglial polarization via the NF-κB/MCT1/iNOS signaling axis under low-glucose conditions显示文摘Proinflammatory microglia rely predominantly on glycolysis to maintain cytokine production during ischemia,accompanied with the increases of inducible nitric oxide synthase(iNOS)and monocarboxylate transporter 1(MCT1).Whether there is a link between iNOS and MCT1 expression patterns and pyruvate could act as an energy source to sustain the M1 proinflammatory microglial phenotype,however,remain unclear.In the present study,we examined responses from microglia in the mouse brains subjected to ischemia,and treated with low glucose treatment in vitro.Zhou Peng Du Juanjuan Zhou Tao Sun Chenyou Cui Huairui Ding Maochao Yang Chaorian Liao Min 2021解剖学杂志2021,44,S01:1
13Analysis of low- frequency oscillation in electric railways based on small- signal modeling of vehicle-grid system in dq frame 显示文摘Wang Hui Wu Mingli Sun Juanjuan 2015IEEE Transactions on Power Electronics2015,30,9:1
14A Novel Calibration Method of Magnetic Compass Based on Ellipsoid Fitting显示文摘JianCheng Fang HongWei Sun Juanjuan Cao 0,,06:1
15A novel calibration method of magnetic compass based on ellipsoid fitting 显示文摘FANG Jiancheng SUN Hongwei CAO Juanjuan ZHANG Xiao TAO Ye 2011IEEE Transactions on Instrumentation and Measurement2011,60,6:1
16Advances in research of land surface evapotranspiration at home and abroad显示文摘Land surface evapotranspiration (ET) is an important part of the hydrologic cycle and energy balances.With the development of remote sensing technology,research on monitoring and estimating of evapotranspiration has made important progress.This paper summarizes advances in measuring and estimating regional evapotranspiration at home and abroad based on traditional methods and remote sensing.This summary includes such methods as Bowen,Gradient,Penman-Monteith,Water Balance,Eddy Correlation,SPAC,Energy Balance and Remote Sensing.Also,the evapotranspiration achievements in the Heihe River Basin are also discussed.Finally,the existing problems in regional evapotranspiration research and future development prospects are also discussed at the conclusion of this paper.XinPing Luo KeLi Wang Hao Jiang Jia Sun JuanJuan Xu QingLiang Zhu ZhaoGuo Li 2010Research in Cold and Arid Regions2010,2,2:1
17Momordica charantia polysaccharides could protect against cerebral ischemia/reperfusion injury through inhibiting oxidative stress mediated c-Jun N-terminal kinase 3 signaling pathway显示文摘GONG Juanjuan SUN Fumou LI Yihang 2015Neuropharmacology2015,91,:1
18Multiwalled carbon nanotubes-doped polymeric ionic liquids coating for multiple headspace solid-phase microextraction显示文摘Juanjuan Feng Min Sun Leilei Li Xiaojiao Wang Huimin Duan Chuannan Luo 2014Talanta2014,,:1
19Modelling soil water dynamics and root water uptake for apple trees under water storage pit irrigation显示文摘Water storage pit irrigation is a new method suitable for apple trees.It comes with advantages such as water saving,water retention and drought resistance.A precise study of soil water movement and root water uptake is essential to analyse and show the advantages of the method.In this study,a mathematical model(WSPI-WR model)for 3D soil water movement and root water uptake under water storage pit irrigation was established based on soil water dynamics and soil moisture and root distributions.Moreover,this model also considers the soil evaporation,pit wall evaporation and water level variation in the pit.The finite element method was used to solve the model,and the law of mass conservation was used to analyse the water level variation.The model was validated by experimental data of the sap flow of apple trees and soil moisture in the orchard.Results showed that the WSPI-WR model is highly accurate in simulating the root water uptake and soil water distributions.The WSPI-WR model can be used to simulate root water uptake and soil water movement under water storage pit irrigation.The simulation showed that orchard soil water content and root water uptake rate centers on the storage pit with an ellipsoid distribution.The maximum distribution region of soil water and root water uptake rate was near the bottom of the pit.Distribution can reduce soil evaporation in the orchard and improve the soil water use efficiency in the middle-deep soil.Xianghong Guo Tao Lei Xihuan Sun Juanjuan Ma Lijian Zheng Shaowen Zhang Qiqi He 2019International Journal of Agricultural and Biological Engineering2019,12,5:1
20A novel aromatically functional polymeric ionic liquid as sorbent material for solid-phase microextraction显示文摘Juanjuan Feng Min Sun Jubai Li Xia Liu Shengxiang Jiang 2012Journal of Chromatography A2012,,:1
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