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| 1 | YB-1, a new biomarker of glioma progression, is associated with the prognosis of glioma patients显示文摘(YB-1 ) Y 盒子蛋白质 1 是在各种各样的癌症表示的多功能的细胞的蛋白质,并且是在癌症治疗的一个潜在的目标。尽管有证据出现,那 YB-1 在人的癌症起一个作用,在 glioma 的 YB-1 表示的临床的意义没被建立。在现在的学习,我们在 glioma 肿瘤调查了 YB-1 水平并且分析了在 YB-1 水平和恶意的 glioma 的等级之间的关系,与提供为在临床、基本的研究背景的 gliomas 的诊断和治疗的新想法的目的。108 个病人的一个总数,与等级的 gliomas 包括 14, 31, 30,和 33 分别地,我, II, III,和 IV 在这研究被包括。YB-1 的 mRNA 和蛋白质层次被发现在等级 IV 和降低等级的肿瘤之间显著地不同。在脑髓的液体的 YB-1 层次比在等级在等级 III 和 IV glioma 病人是显著地更高的我和 II 病人。染色的 Immunofluorescence 被用来在细胞质和原子核检测 YB-1 的层次,并且结果显示细胞内部的分发显著地与 glioma 的病理学的等级被联系。YB-1 的高水平与弄短的幸存被联系,建议 YB-1 起在人的 glioma 的前进的一个作用。 | Jin Zheng Jiangwei Zhang Guangyue Li Huilin Gong | 2016 | Acta Biochimica et Biophysica Sinica2016,48,4: | 8 |
| 2 | Vehicle Planar Motion Stability Study for Tyres Working in Extremely Nonlinear Region显示文摘Many researches on vehicle planar motion stability focus on two degrees of freedom(2DOF) vehicle model,and only the lateral velocity (or side slip angle) and yaw rate are considered as the state variables.The stability analysis methods,such as phase plane analysis,equilibriums analysis and bifurcation analysis,are all used to draw many classical conclusions.It is concluded from these researches that unbounded growth of the vehicle motion during unstable operation is untrue in reality thus one limitation of the 2DOF model.The fundamental assumption of the 2DOF model is that the longitudinal velocity is treated as a constant,but this is intrinsically incorrect.When tyres work in extremely nonlinear region,the coupling between the vehicle longitudinal and lateral motion becomes significant.For the purpose of solving the above problem,the effect of vehicle longitudinal velocity on the stability of the vehicle planar motion when tyres work in extremely nonlinear region is investigated.To this end,a 3DOF model which introducing the vehicular longitudinal dynamics is proposed and the 3D phase space portrait method is employed for visualization of vehicle dynamics.Through the comparisons of the 2DOF and 3DOF models,it is discovered that the vehicle longitudinal velocity greatly affects the vehicle planar motion,and the vehicle dynamics represented in phase space portrait are fundamentally different from that of the 2DOF model.The vehicle planar motion with different front wheel steering angles is further represented by the corresponding vehicle route,yaw rate and yaw angle.These research results enhance the understanding of the stability of the vehicle system particularly during nonlinear region,and provide the insight into analyzing the attractive region and designing the vehicle stability controller,which will be the topics of future works. | LIU Li SHI Shuming SHEN Shuiwen CHU Jiangwei | 2010 | Chinese Journal of Mechanical Engineering2010,23,2: | 8 |
| 3 | Characterization of miRNomes in Acute and Chronic Myeloid Leukemia Cell Lines显示文摘Myeloid leukemias are highly diverse diseases and have been shown to be associated with microRNA(miRNA) expression aberrations. The present study involved an in-depth miRNome analysis of two human acute myeloid leukemia(AML) cell lines, HL-60 and THP-1, and one human chronic myeloid leukemia(CML) cell line, K562, via massively parallel signature sequencing. mRNA expression profiles of these cell lines that were established previously in our lab facilitated an integrative analysis of miRNA and mRNA expression patterns. miRNA expression profiling followed by differential expression analysis and target prediction suggested numerous miRNA signatures in AML and CML cell lines. Some miRNAs may act as either tumor suppressors or oncomiRs in AML and CML by targeting key genes in AML and CML pathways. Expression patterns of cell type-specific miRNAs could partially reflect the characteristics of K562, HL-60 and THP-1 cell lines, such as actin filament-based processes, responsiveness to stimulus and phagocytic activity. miRNAs may also regulate myeloid differentiation, since they usually suppress differentiation regulators. Our study provides a resource to further investigate the employment of miRNAs in human leukemia subtyping, leukemogenesis and myeloid development. In addition, the distinctive miRNA signatures may be potential candidates for the clinical diagnosis, prognosis and treatment of myeloid leukemias. | Qian Xiong Yadong Yang Hai Wang Jie Li Shaobin Wang Yanming Li Yaran Yang Kan Cai Xiuyan Ruan Jiangwei Yan Songnian Hu Xiangdong Fang | 2014 | Genomics, Proteomics & Bioinformatics2014,12,2: | 6 |
| 4 | Fabrication of a nano-sized ZSM-5 zeolite with intercrystalline mesopores for conversion of methanol to gasoline显示文摘Carbon deposition during methanol to hydrocarbons leads to the quick deactivation of ZSM-5 catalyst and it is one of the major problems for this technology. Decreasing the crystal size or introducing mesopores into ZSM-5 zeolites can improve its diffusion property and decrease the coke formation. In this paper, nano-sized ZSM-5 zeolite with intercrystalline mesopores combining the mesoporous and nanosized structure was fabricated. For comparison, the mesoporous ZSM-5 and nano-sized ZSM-5 were also prepared. These catalyst samples were characterized by XRD, BET, NH3-TPD, TEM, Py-IR and TG techniques and used on the conversion of methanol to gasoline in a fixed-bed reactor at T = 405 °C, WHSV = 4.74 h-1and P = 1.0 MPa. It was found that the external surface area of the nano-sized ZSM-5 zeolite with intercrystalline mesopores reached 104 m2/g, larger than that of mesoporous ZSM-5(66 m2/g) and nanosized ZSM-5(76 m2/g). Catalytic lifetime of the nano-sized ZSM-5 zeolite with intercrystalline mesopores was 93 h, which was only longer than that of mesoporous ZSM-5(86 h), but shorter than that of nanosized ZSM-5(104 h). Strong acidity promoted the coke formation and thus decreased the catalytic lifetime of the nano-sized ZSM-5 zeolite with intercrystalline mesopores though it presented large external surface that could improve the diffusion property. The special zeolite catalyst was further dealuminated to decrease the strong acidity. After this, its coke formation rate was slowed and catalytic lifetime was prolonged to 106 h because of the large external surface area and decreased weak acidity. This special structural zeolite is a potential catalyst for methanol to gasoline reaction. | Tingjun Fu Jiangwei Chang Juan Shao Zhong Li | 2017 | Journal of Energy Chemistry2017,26,1: | 5 |
| 5 | Research into comprehensive gas extraction technology of single coal seams with low permeability in the Jiaozuo coal mining area显示文摘For a low permeability single coal seam prone to gas outbursts,pre-drainage of gas is difficult and inefficient,seriously restricting the safety and efficiency of production.Radical measures of increasing gas extraction efficiency are pressure relief and infrared antirefiection.We have analyzed the effect of mining conditions and the regularity of mine pressure distribution in front of the working face of a major coal mine of the Jiaozuo Industrial(Group) Co.as our test area,studied the width of the depressurization zone in slice mining and analyzed gas efficiency and fast drainage in the advanced stress relaxation zone.On that basis,we further investigated and practiced the exploitation technology of shallow drilling,fan drilling and grid shape drilling at the working face.Practice and our results show that the stress relaxation zone is the ideal region for quick and efflcient extraction of gas.By means of an integrated extraction technology,the amount of gas emitted into the zone was greatly reduced,while the risk of dangerous outbursts of coal and gas was lowered markedly.This exploration provides a new way to control for gas in working faces of coal mines with low permeability and risk of gas outbursts of single coal seams in the Jiaozuo mining area. | Fu Jiangwei Fu Xuehai Hu Xiao Chen Li Ou Jianchun | 2011 | Mining Science and Technology2011,21,4: | 5 |
| 6 | A camel anti-lysozyme CDR3 only domain antibody selected from phage display VHH library acts as potent lysozyme inhibitor显示文摘抗体绑定地点的 Mimetics 代表特别地有趣的目标,然而,他们是困难的识别。在大多数情况中,自然地导出肽显示出的 CDR3 一项低得多的活动和亲密关系。在这研究,我们鉴别有框架 3 的 CDR3 域抗体(FR3 ) 和在由屏蔽使溶解酵素免疫的噬菌体的胁腹的 FR4 显示 VHH 图书馆。这抗体有有势力酶禁止活动和高热的稳定性。与顺序排列和指导地点的诱变的分析,我们发现在在 FR3 的氨基酸位置 88 点的半胱氨酸残余可能在维持 CDR3 抗体的稳定性起一个关键作用。小型的 CDR3 领域抗体可能为亲密关系转移充当新脚手架,因此做有用贡献到抗原抗体相互作用的理解。 | Lingling Qiu Yaning Feng Xiaoling Ma Jiangwei Li | 2017 | Acta Biochimica et Biophysica Sinica2017,49,6: | 5 |
| 7 | Experimental and simulation of the reactive dividing wall column based on ethyl acetate synthesis显示文摘Reactive dividing wall column(RDWC) is a highly integrated unit which combines reaction distillation(RD) with dividing wall column separation technology into one shell, and it realized the chemical reaction and the separation of multiple product fractions simultaneously. In this paper, the reaction of esterification with acetic acid and ethanol to produce ethyl acetate was used as the research system, experiments and simulations of the RDWC were carried out. This system in the traditional process mostly used the homogeneous catalyst(e.g. sulfuric acid). However, in view of the corrosion of the equipment caused by the acidity of the catalyst, we used the heterogeneous catalysts – iron exchange resins – Amberlyst15 and proposed a novel catalyst loading method. Firstly,the reliability of the model of the simulation was verified by the experimental study on the change of liquid split ratio and reflux ratio. After that, the four-column model was established in Aspen Plus to analyze the effects of the amount of azeotropic agent, reflux ratio and acetic acid concentration. Finally, for a fair comparison, the economic analysis was conducted between traditional RD column and RDWC. The results showed that RDWC can save34.7% of total operating costs and 18.5% of TAC. | Jiangwei Xie Chunli Li Fei Peng Lihui Dong Shuaiming Ma | 2018 | Chinese Journal of Chemical Engineering2018,26,7: | 4 |
| 8 | Reservoir accumulation conditions and key exploration&development technologies for Keshen gas field in Tarim Basin显示文摘The Keshen gas field is located in the central part of Kuqa foreland thrust belt in Tarim Basin,and is another large gas field discovered in Kuqa depression after Kela 2 gas field.Since the breakthrough in 2008,a number of large and medium scale gas reservoirs including Keshen 2,Keshen 5 and Keshen 8 have been discovered,that are characterized by ultra depth,ultra-high pressure,ultra-low porosity,ultra-low permeability,high temperature and high pressure.With natural gas geological reserves of nearly trillion cubic meters and production capacity of nearly 5.5 billion cubic meters,the Keshen gas field is the main natural gas producing area in Tarim Oilfield.The Keshen gas field is located in a series of thrusting imbrication structures in the Kelasu structural belt of Kuqa foreland thrust belt.The salt roof structure,plastic rheology of salt beds and pre-salt faulted anticlinal structure constitute the large wedge-shaped thrust body.The thick delta sandstone of the Cretaceous Bashijike Formation is widely distributed,and it forms the superior reservoir-caprock combination with overlying Paleogene thick gypsum-salt bed.The deep Jurassic-Triassic oil and gas migrate vertically along fault system formed in Late Himalaya,break through the thick Cretaceous mudstone and move laterally along the fracture system of the pre-salt reservoirs,to form anticline and fault anticline high pressure reservoir groups.Through near ten years of studies,the three-dimensional seismic acquisition and processing technology for complex mountainous areas,extrusion salt-related structural modeling technology and fractured low-porosity sandstone reservoir evaluation technology have been established,which lay a foundation for realization of oil and gas exploration objectives.Logging acquisition and evaluation technology for high temperature,high pressure,ultra-deep and low-porosity sandstone gas reservoirs,and efficient development technology for fractured tight sandstone gas reservoirs have been developed,which provide a technical support for efficient exploration&development and rapid production of the Keshen gas field. | Haijun Yang Yong Li Yangang Tang Ganglin Lei Xiongwei Sun Peng Zhou Lu Zhou Anming Xu Jingjie Tang Wenhui Zhu Jiangwei Shang Weili Chen Mei Li | 2019 | Petroleum Research2019,4,4: | 3 |
| 9 | 6 GHz hyperfast rotation of an optically levitated nanoparticle in vacuum显示文摘We report an experimental observation of a record-breaking ultrahigh rotation frequency about 6 GHz in an optically levitated nanoparticle system. We optically trap a nanoparticle in the gravity direction with a high numerical aperture (NA) objective lens,which shows significant advantages in compensating the influences of the scattering force and the photophoretic force on the trap,especially at intermediate pressure (about100 Pa). This allows us to trap a nanoparticle from atmospheric to low pressure (10^(-3)Pa) without using feedback cooling. We measure a highest rotation frequency about 4.3 GHz of the trapped nanoparticle without feedback cooling and a 6 GHz rotation with feedback cooling,which is the fastest mechanical rotation ever reported to date.Our work provides useful guides for efficiently observing hyperfast rotation in the optical levitation system and may find various applications such as in ultra-sensitive torque detection,probing vacuum friction,and testing unconventional decoherence theories. | YUANBIN JIN JIANGWEI YAN SHAH JEE RAHMAN JIE LI XUDONG YU JING ZHANG | 2021 | Photonics Research2021,9,7: | 3 |
| 10 | Motif-mediated Au25(SPh)5(PPh3)ioX2 nanorods with conjugated electron delocalization显示文摘We developed a general and effective strategy to afford rod-like [Au25(SPh)5(PPh3)10X2]X2 (X = Cl/Br) nanoclusters, capped by conjugated delocalized pπ electron mediated ligands. The detailed atomic structure of these materials was resolved by synchrotron radiation X-ray diffraction (SRXRD) combined with electrospray ionization mass spectrometry (ESI-MS) and UV–vis analyses. The Au17(SR)3(PPh3)6X2minimum asymmetric unit, with exposed Au atoms at the center, can serve as an important model to understand the transformation of homogold nanoclusters into alloy nanoclusters. The conjugated delocalized pπ electrons of the thiolate ligands can effectively tune the electronic properties of the Au25 kernel, as qualitatively evidenced by the energy gaps measured by UV–vis experiments and density functional theory (DFT) calculations. The delocalized electrons distinctly flow to the orbitals of the Au25 kernel via the S atoms of the aromatic thiolates. The ESI-MS analysis indicates that Au3 clusters are formed during the etching reactions, which provide an opportunity to gain insight into the intriguing conversion pathway of the Aun(PPh3)mXy precursor to the final Au25 nanorods. Finally, the thiophenol-protected Au25 nanorods, immobilized on activated carbon, show good catalytic activity in the aerobic oxidation of glucose to gluconic acid (74% glucose conversion and 100% selectivity for gluconic acid), much higher than that of the aliphatic Au25 analogue. The Au25(SPh)5(PPh3)10X2 catalyst yields a turnover frequency (TOF) of 13.5 s^–1, higher than that of commercial catalysts such as Pd/activated carbon (AC) and Pd-Bi/AC. The insight obtained from this study will support the development and design of efficient nanogold catalysts for special oxidation reactions. | Kai Zheng Jiangwei Zhang Dan Zhao Yong Yang Zhimin Li Gao Li | 2019 | Nano Research2019,12,3: | 3 |
| 11 | Atomic-scale mechanism of the θ’’→θ’ phase transformation in Al-Cu alloys显示文摘The phase transformation of θ’’→θ’ in an Al-5.7 Cu alloy was investigated by aberration-corrected scanning transmission electron microscopy, and the tranformation mode of θ’’→θ’ during aging treatment was clarified. In the presence of the θ’ phases, θ’ was found to be formed by in-situ transformation fromθ’’ with the same plate shape, size and broad faces. The transformation starts from multiple sites within the θ’ precipitate and the whole θ’ phase finally forms as the preferential θ’ sections grow and connect with each other. Antiphase domain boundaries are also found in some θ’ precipitates when the disregistry exists between different θ’ sections. | Zhenju Shen Qingqing Ding Chunhui Liu Jiangwei Wang He Tian Jixue Li Ze Zhang | 2017 | Journal of Materials Science & Technology2017,33,10: | 3 |
| 12 | Effects of cannabinoid receptor type 2 on endogenous myocardial regeneration by activating cardiac progenitor cells in mouse infarcted heart显示文摘Cannabinoid receptor type 2(CB2)activation is recently reported to promote proliferation of some types of resident stem cells(e.g.,hematopoietic stem/progenitor cell or neural progenitor cell).Resident cardiac progenitor cell(CPC)activation and proliferation are crucial for endogenous cardiac regeneration and cardiac repair after myocardial infarction(MI).This study aims to explore the role and possible mechanisms of CB2receptor activation in enhancing myocardial repair.Our results revealed that CB2receptor agonist AM1241 can significantly increase CPCs by c-kit and Runx1 staining in ischemic myocardium as well as improve cardiomyocyte proliferation.AM1241 also decreased serum levels of MDA,TNF-αand IL-6 after MI.In addition,AM1241 can ameliorate left ventricular ejection fraction and fractional shortening,and reduce fibrosis.Moreover,AM1241 treatment markedly increased p-Akt and HO-1 expression,and promoted Nrf-2 nuclear translocation.However,PI3K inhibitor wortmannin eliminated these cardioprotective roles of AM1241.In conclusion,AM1241 could induce myocardial regeneration and improve cardiac function,which might be associated with PI3K/Akt/Nrf2 signaling pathway activation.Our findings may provide a promising strategy for cardiac endogenous regeneration after MI. | WANG YaBin MA Sai WANG Qiang HU WenXing WANG DongJuan LI XiuJuan SU Tao QIN Xing ZHANG XiaoTian MA Ke CHEN JiangWei XIONG LiZe CAO Feng | 2014 | Science China(Life Sciences)2014,57,2: | 3 |
| 13 | The immunologic and hematopoietic profiles of mesenchymal stem cells derived from different sections of human umbilical cord显示文摘间充质的干细胞(MSC ) 广泛地在 allogeneic 干细胞移植被使用了。我们比较了 immunologic, MSC 的造血的特征源于整个人的脐的绳索(UC ) ,以及从 UC 的不同的节,包括羊膜的膜(AM ) ,沃顿的果冻(WJ ) ,和脐的容器(紫外) 。房间显型被流动 cytometry 检验。淋巴细胞转变测试和混合淋巴细胞反应被执行评估从 UC 导出的 MSC 的免疫调节的活动。cytokines 的 mRNA 表示被即时聚合酶链反应检测。造血的功能被文化 co MSC 学习, CD34 + 房间从绳索血孤立。我们的结果显示出包括 UC 与这四不同的节分开的那 MSC, WJ,紫外,并且 AM 有类似的生物特征。所有 MSC 有多系区别能力并且能区分进造骨细胞, adipocytes,和 chondrocytes。MSC 也以一种剂量依赖者方式禁止了 allogeneic T 房间的增长。cytokines 的相对 mRNA 表示被检验,并且结果显示出比 MSC 的有的更高的 interleukin-6 (IL6 ) , IL11,干细胞因素,和 FLT3 表示从 UC 的特定的节导出的那 UCMSC。当 co 有教养时, CD34 + 房间有高繁殖效率, MSC 源于 UC, UCMSC 在之中是最有效的喂层的不同的节。我们的学习证明 MSC 能与支持特征的类似的 immunomodulation 和造血作用从整个 UC 或 UC 的特定的节被孤立。 | Man Xu Bin Zhan Yuanlin Liu Jin Zhang Hongxia Sheng Rui Shi Li Liao Na Liu Jiangwei Hu Jun Wang Hongmei Ning Ting Liu Yi Zhang Hu Chen | 2014 | Acta Biochimica et Biophysica Sinica2014,46,12: | 3 |
| 14 | High-efficiency somatic reprogramming induced by intact MII oocytes显示文摘体的原子核能是进由原子转移,房间熔化和抄写因素的表示的一个 pluripotent 状态的 reprogrammed。然而,这些 reprogramming 过程是很低效的,它极大地妨碍了努力阐明内在的分子的机制。这里,我们报导把所有三 reprogramming 方法论的优点合为一个过程的新 reprogramming 策略。我们从积云房间把原子核注入了未经触动的 MII 卵母细胞。后面的激活,开发到胚胎的茎(ES ) 房间衬里的胚囊阶段,和 tetraploid (4N ) 的 80% 重建的胚胎每重建的卵母细胞以 30% 的率被产生。我们也产生了三倍性(3N ) 在进激活的卵母细胞的体的原子核的注射以后的 ES 房间。4N 和 3N ES 房间表示了 pluripotent 标记并且在 vivo 区分了进三胚胎的细菌层的房间类型。而且,所有 ES 房间产生了 histocompatible,在在免疫能力的 B6D2F1 老鼠被嫁接以后的区分的房间,显示出房间从这 reprogramming 策略导出的那 ES 可能为移植担任遗传上定制的纸巾的来源。因此,我们建立了为调查涉及体的 reprogramming 的分子的机制提供一个系统的一个简单、高度有效的 reprogramming 过程。 | Hui Yang Linyu Shi Shenghua Zhang Jiangwei Lin Jing Jiang Jinsong Li | 2010 | Cell Research2010,20,9: | 2 |
| 15 | Impact of switching frequencies on the TID response of SiC power MOSFETs显示文摘Different switching frequencies are required when SiC metal-oxide-semiconductor field-effect transistors(MOSFETs)are switching in a space environment.In this study,the total ionizing dose(TID)responses of SiC power MOSFETs are investigated under different switching frequencies from 1 kHz to 10 MHz.A significant shift was observed in the threshold voltage as the frequency increased,which resulted in premature failure of the drain-source breakdown voltage and drain-source leakage current.The degradation is attributed to the high activation and low recovery rates of traps at high frequencies.The results of this study suggest that a targeted TID irradiation test evaluation method can be developed according to the actual switching frequency of SiC power MOSFETs. | Sheng Yang Xiaowen Liang Jiangwei Cui Qiwen Zheng Jing Sun Mohan Liu Dang Zhang Haonan Feng Xuefeng Yu Chuanfeng Xiang Yudong Li Qi Guo | 2021 | Journal of Semiconductors2021,42,8: | 2 |
| 16 | Discrete twinning dynamics and size-dependent dislocation-to twin transition in body-centred cubic tungsten显示文摘Body-centred cubic(BCC) metals are known to have unstable intrinsic stacking faults and high resistance to deformation twinning, which can strongly influence their twinning behaviour. Though twinning mechanisms of BCC metals have been investigated for more than 60 years, the atomistic level dynamics of twinning remains under debate, especially regarding its impact on competition between twinning and slip. Here, we investigate the atomistic level dynamics of twinning in BCC tungsten(W) nanowires using in situ nanomechanical testing. Quantitative experimental studies directly visualize that deformation twins in W nanowires have a minimum size of six-layers and grow in increments of approximately three-layers at a time, in contrast to the layer-by-layer growth of deformation twins in face-centred cubic metals. These unique twinning dynamics induces a strong competition with ordinary dislocation slip,as exhibited by a size-dependent dislocation-to-twin transition in W nanowires, with a transition size of ~40 nm. Our work provides physical insight into the dynamics of twinning at the atomic level, as well as a size-dependent dislocation-twinning competition, which have important implications for the plastic deformation in a broad class of BCC metals and alloys. | Jiangwei Wang Anik H.M.Faisal Xiyao Li Youran Hong Qi Zhu Hongbin Bei Ze Zhang Scott X Mao Christopher R.Weinberger | 2022 | Journal of Materials Science & Technology2022,,11: | 2 |
| 17 | Preparation and photocatalytic activity of Fe3O4@SiO2@ZnO:La显示文摘In this study,Fe3 O4@SiO2@ZnO:La microspheres were successfully prepared.The microspheres have the advantages of both ZnO doped with La and the Fe3 O4@SiO2 structure such that the former improves the photocatalytic activity of ZnO and the latter can be reused.The X-ray diffraction(XRD),a field emission scanning electron microscope(SEM),a field emission transmission electron microscope(TEM),X-ray photoelectron spectroscopy(XPS),and a vibrating sample magnetometer(VSM)were used to characterize Fe3 O4@SiO2@ZnO:La microspheres.Methyl orange was used as the model molecule to study the effect of the Zn2+concentration and the doping amount of La on the photocatalytic activity of Fe3 O4@SiO2@ZnO:La microspheres.Results show that in the synthesis of Fe3 O4@SiO2@ZnO:La microspheres,photocatalytic activity of the microspheres is enhanced first and weakened later with the increase of Zn2+concentration.In the La doping process,the photocatalytic activity of Fe3 O4@SiO2@ZnO:La microspheres is enhanced with the increase in the La doping amount.The magnetic photocatalysts not only have high photocatalytic activity,but also can be reused.After being reused five times,the photocatalyst’s degradation rate of methyl orange is still as high as 81%,which shows that magnetic photocatalysts have prospective wider applications in photocatalytic degradation of dye wastewater. | Xiaowei Lv Wenyi Huang Xingcheng Ding Jiangwei He Qiumei Huang Jialin Tan Hao Cheng Jun Feng Lijun Li | 2020 | Journal of Rare Earths2020,38,12: | 2 |
| 18 | Study of the failure mechanism of an epoxy coating system under high hydrostatic pressure显示文摘 | Ying Liu Jiangwei Wang Li Liu Ying Li Fuhui Wang | 2013 | Corrosion Science2013,,: | 1 |
| 19 | Microstructure characteristics in the interface zone of Ti/Al diffusion bonding显示文摘 | Ren Jiangwei Li Yajiang Feng Tao | 2002 | Materials Letters2002,56,5: | 1 |
| 20 | Technology Development Analysis on Low Carbon for Power of Heavy-Duty Commercial Vehicle显示文摘Commercial vehicle industry worldwide is facing challenges from environmental pressures,stringent limits of CO_(2) emission,governmental regulations as well as ever-increased customer demands.This paper analyzes the above-mentioned challenges,especially in China,including the potential improvement to increase the brake thermal efficiency(BTE),with five levels of BTE proposed,ranging from current 45 to 60%in future,corresponding to China fuel consumption regulation(CFCR)in different phases.The authors also proposed the technology roadmaps to meet the upcoming CFCR3 and CFCR4;finally,the authors draw the conclusions to conform with ever-stringent regulation in China. | Jiangwei Liu Jun Li Yongjun Wang Dalu Dong Yansheng Yin Huayu Jin Shijie Sun Huili Dou Yanbo Shi Lei Fu Fei Ge | 2019 | Automotive Innovation2019,2,1: | 1 |