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| 1 | Facile electrodeposition of 3D concentration-gradient Ni-Co hydroxide nanostructures on nickel foam as high performance electrodes for asymmetric supercapacitors显示文摘小说三维(3D ) 集中坡度 Ni 公司氢氧化物 nanostructures (3DCGNC ) 被一个灵巧的逐步的电气化学的免职方法直接在镍泡沫上种了并且强烈地为 supercapacitors 调查同样没有文件夹、没有售票员的电极。基于一种三电极的电气化学的描述技术,获得的 3DCGNC 电极表明了 1,760 F 的一个高特定的电容 ???? | Mingyang Yang Hua Cheng Yingying Gu Zhifang Sun Jing Hu Lujie Cao Fucong Lv Minchan Li Wenxi Wang Zhenyu Wang Shaofei Wu Hongtao Liu Zhouguang Lu | 2015 | Nano Research2015,8,8: | 8 |
| 2 | Ultra-sensitive Nanoprobe Modified with Tumor Cell Membrane for UCL/MRI/PET Multimodality Precise Imaging of Triple-Negative Breast Cancer显示文摘Triple-negative breast cancer(TNBC)is a subtype of breast cancer in which the estrogen receptor and progesterone receptor are not expressed,and human epidermal growth factor receptor 2 is not amplified or overexpressed either,which make the clinical diagnosis and treatment very challenging.Molecular imaging can provide an effective way to diagnose TNBC.Upconversion nanoparticles(UCNPs),are a promising new generation of molecular imaging probes.However,UCNPs still need to be improved for tumor-targeting ability and biocompatibility.This study describes a novel probe based on cancer cell membrane-coated upconversion nanoparticles(CCm-UCNPs),owing to the low immunogenicity and homologous-targeting ability of cancer cell membranes,and modified multifunctional UCNPs.This probe exhibits excellent performance in breast cancer molecular classification and TNBC diagnosis through UCL/MRI/PET tri-modality imaging in vivo.By using this probe,MDA-MB-231 was successfully differentiated between MCF-7 tumor models in vivo.Based on the tumor imaging and molecular classification results,the probe is also expected to be modified for drug delivery in the future,contributing to the treatment of TNBC.The combination of nanoparticles with biomimetic cell membranes has the potential for multiple clinical applications. | Hanyi Fang Mengting Li Qingyao Liu Yongkang Gai Lujie Yuan Sheng Wang Xiao Zhang Min Ye Yongxue Zhang Mingyuan Gao Yi Hou Xiaoli Lan | 2020 | Nano-Micro Letters2020,12,5: | 5 |
| 3 | Operation of offshore wind farms connected with DRU-HVDC transmission systems with special consideration of faults显示文摘The diode rectifier unit(DRU)-based high-voltage DC(DRU-HVDC) system is a promising solution for offshore wind energy transmission thanks to its compact design, high efficiency, and strong reliability. Herein we investigate the feasibility of the DRU-HVDC system considering onshore and offshore AC grid faults, DC cable faults, and internal DRU faults. To ensure safe operation during the faults, the wind turbine(WT) converters are designed to operate in either current-limiting or voltage-limiting mode to limit potential excessive overcurrent or overvoltage. Strategies for providing fault currents using WT converters during offshore AC faults to enable offshore overcurrent and differential fault protection are investigated. The DRU-HVDC system is robust against various faults, and it can automatically restore power transmission after fault isolation. Simulation results confirm the system performance under various fault conditions. | Rui Li Lujie Yu Lie Xu | 2018 | Global Energy Interconnection2018,1,5: | 4 |
| 4 | Preparation of pitch precursor with excellent spinnability for general-purpose carbon fibre using coal tar pitch as raw material显示文摘Tetrahydrofuran(THF) extract of coal tar pitch(CTP) was used instead of blending CTP with pretreated pyrolysis fuel oil to prepare an isotropic pitch precursor with excellent spinnability for general-purpose carbon fibre through bromination-dehydrobromination. The feasibility and effectiveness of synthesising an isotropic pitch precursor derived from THF-soluble(CTP-THFs) is demonstrated in this study.The results show that CTP-THFs contains more light components than CTP;CTP-THFs and CTP monomer proportions were 62.52% and 45.32%, respectively. However, based on comparisons of CTP-THFsBr0 and CTPBr0 characterisations, CTP-THFs exhibits better polycondensation than CTP. Bromination-dehydrobro mination promotes polycondensation of pitch precursors, leading to greater carbon aromaticity in CTP-THFsBr5, CTP-THFsBr10, and CTP-THFsBr15 than that in CTP-THFsBr0 and CTPBr0. CTP-THFsBr5 and CTP-THFsBr10 have excellent spinnability even with softening points as high as 230 ℃. The pericondensed carbon and carbon aromaticity of CTP-THFsBr5 and CTP-THFsBr10 are high owing to the higher degree of polycondensation;however, they still possess a more linear molecular structure. The as-prepared carbon fibre exhibits homogeneity and uniformity, and the mechanical performance is comparable with that of commercial general-purpose carbon fibre products. | Jinchang Liu Chenyang Shen Lujie Huang Tinghao Fang Yaping Li Dingcheng Liang Qiang Xie | 2023 | Chinese Journal of Chemical Engineering2023,54,2: | 3 |
| 5 | Effect of ALA-PDT on the expressions of MMP-9, MMP-13 and TIMP-1 of hypertrophic scar model in rabbit ears显示文摘Objective: To investigate the effect of 5-aminolevulinic(ALA)-photodynamic therapy(PDT) on the expressions of MMP-9, MMP-13 and TIMP-1 of hypertrophic scar model in rabbit ears, and analyze the possible therapeutic mechanisms of ALA-PDT treatment to hypertrophic scars of rabbit ears. Methods: The experimental animals were randomly divided into normal control, negative control, high concentration of ALA-PDT, low concentration of ALA-PDT and PDT groups. The latter three groups received ALA-PDT treatment or PDT treatment once a week for 3 weeks. The specimens of the rabbits were collected respectively 1, 2 and 3 months after treatment to be used for RT-PCR and Western-blot test. Results: 1, 2 and 3 months after PDT treatment, the expressions of MMP-9 and MMP-13(including mRNA and protein) in hypertrophic scar tissues of three treatment groups were significantly higher than those of the negative control group(P<0.01), and the expression of TIMP-1 mRNA and protein of three treatment groups were significantly lower than that of the negative control group(P<0.01). There were also significant differences between high-concentration ALA-PDT treatment group and the low one(P<0.05). Conclusion: ALA-PDT is effective in treating hypertrophic scars of rabbit ears, and its possible therapeutic mechanisms are that ALA-PDT treatment generates oxidation activation effect to activate the activity of MMPs and induces the photoaging of fibroblasts of hypertrophic scar tissues of rabbit ears to inhibit the activity of TIMPs, which causes the up-regulation of MMPs and the down-regulation of TIMPs. Because of this, the degradation of collagen and ECM is accelerated and the formation of scars is suppressed. | ZHOU Pengjun WANG Qiong LI Zhangjun XIAO Shengxiang XU Lujie | 2013 | Journal of Medical Colleges of PLA(China)2013,28,6: | 2 |
| 6 | Comparison of the removal of COD by a hybrid bioreactor at low and room temperature and the associated microbial characteristics显示文摘 | Tianling Li Luji Bo Fan Yang Shanqing Zhang Yonghong Wu Linzhang Yang | 2012 | Bioresource Technology2012,,: | 2 |
| 7 | MXenes for Solar Cells显示文摘Application of two-dimensional MXene materials in photovoltaics has attracted increasing attention since the first report in 2018 due to their metallic electrical conductivity,high carrier mobility,excellent transparency,tunable work function and superior mechanical property.In this review,all developments and applications of the Ti3C2Tx MXene(here,it is noteworthy that there are still no reports on other MXenes’application in photovoltaics by far)as additive,electrode and hole/electron transport layer in solar cells are detailedly summarized,and meanwhile,the problems existing in the related studies are also discussed.In view of these problems,some suggestions are given for pushing exploration of the MXenes’application in solar cells.It is believed that this review can provide a comprehensive and deep understanding into the research status and,moreover,helps widen a new situation for the study of MXenes in photovoltaics. | Lujie Yin Yingtao Li Xincheng Yao Yanzhou Wang Lin Jia Qiming Liu Junshuai Li Yali Li Deyan He | 2021 | Nano-Micro Letters2021,13,5: | 2 |
| 8 | New insights into the sources and formation of carbonaceous aerosols in China:potential applications of dual-carbon isotopes显示文摘Carbonaceous aerosols account for20-50%of total fine particulate matter(PM_(2.5),particles with a diameter of2.5μm or less)mass concentration in polluted urban atmospheres and can affect atmospheric chemistry,air quality,environmental health and Earth's radiation balance[1].Bulk | Fang Cao Yanlin Zhang Lujie Ren Junwen Liu Jun Li Gan Zhang Di Liu Yele Sun Zifa Wang Zongbo Shi Pingqing Fu | 2017 | National Science Review2017,4,6: | 2 |
| 9 | Key problems and solutions in supercritical CO2 fracturing technology显示文摘Supercritical CO2 fracturing is considered to be a new method for efficient exploitation of unconventional reservoirs,such as shale gas,coal bed methane,and tight sand stone gas.Supercritical CO2 has many special properties including low viscosity,high diffusion coefficient,and lack of surface tension,which brings about great advantages for fracturing.However,these properties also cause several problems,such as difficulty in proppant transportation,high friction loss,and high pump displacement.In this paper,the above problems were analyzed by combining field test with laboratory study and specific solutions to these problems are given.The high frictionloss in the pipeline could be reduced by developing a new drag reducing agent and selecting large-size casing.Besides,for the problem of poor capacity in proppant carrying and sand plug,the methods of adding tackifier into supercritical CO2,increasing pump displacement and selecting ultralow density proppants are proposed.Moreover,for the problem of fast leak-off and high requirement for pump displacement,the displacement can be increased or the pad fluid can be injected into the reservoir.After solving the above three problems,the field test of supercritical CO2 fracturing can be conducted.The research results can promote the industrialization process of supercritical CO2 fracturing. | Haizhu WANG Gensheng LI Bin ZHU Kamy SEPEHRNOORI Lujie SHI Yong ZHENG Xiaomei SHI | 2019 | Frontiers in Energy2019,13,4: | 2 |
| 10 | Multiomics approach reveals the ubiquitination-specific processes hijacked by SARS-CoV-2显示文摘The Coronavirus Disease 2019(COVID-19)caused by Severe Acute Respiratory Syndrome Coronavirus 2(SARS-CoV-2)is a global pandemic that seriously threatens health and socioeconomic development,but the existed antiviral drugs and vaccines still cannot yet halt the spread of the epidemic.Therefore,a comprehensive and profound understanding of the pathogenesis of SARS-CoV-2 is urgently needed to explore effective therapeutic targets.Here,we conducted a multiomics study of SARS-CoV-2-infected lung epithelial cells,including transcriptomic,proteomic,and ubiquitinomic.Multiomics analysis showed that SARS-CoV-2-infected lung epithelial cells activated strong innate immune response,including interferon and inflammatory responses.Ubiquitinomic further reveals the underlying mechanism of SARS-CoV-2 disrupting the host innate immune response.In addition,SARS-CoV-2 proteins were found to be ubiquitinated during infection despite the fact that SARS-CoV-2 itself didn’t code any E3 ligase,and that ubiquitination at three sites on the Spike protein could significantly enhance viral infection.Further screening of the E3 ubiquitin ligases and deubiquitinating enzymes(DUBs)library revealed four E3 ligases influencing SARS-CoV-2 infection,thus providing several new antiviral targets.This multiomics combined with high-throughput screening study reveals that SARS-CoV-2 not only modulates innate immunity,but also promotes viral infection,by hijacking ubiquitination-specific processes,highlighting potential antiviral and anti-inflammation targets. | Gang Xu Yezi Wu Tongyang Xiao Furong Qi Lujie Fan Shengyuan Zhang Jian Zhou Yanhua He Xiang Gao Hongxiang Zeng Yunfei Li Zheng Zhang | 2022 | Signal Transduction and Targeted Therapy2022,7,10: | 1 |
| 11 | Effects of Long-term Located Fertilization on Evolution of Available Phosphorus and Phosphorus Pool in Shandong Fluvo-aquic Soil显示文摘This study was conducted to investigate the effects of long-term located fertilization on soil phosphorus,the changes of soil available phosphorus( OlsenP),the evolution of soil total phosphorus( TP) and the ratio change of Olsen-P to TP( PAC) by 33-year fertilization experiments in winter wheat-summer maize rotation system in Shandong fluvo-aquic soil. Eight treatments were designed as no fertilization( CK),nitrogen fertilizer( N),nitrogen and phosphate fertilizer( NP),nitrogen and potassium fertilizer( NK),phosphate and potassium fertilizer( PK),nitrogen-phosphate-potassium fertilizer( NPK),reduced NPK fertilizer( N_(15) PK),and increased NPK fertilizer( N_(25) PK). Meanwhile,eight organic fertilizer-added treatments were designed based on the application of inorganic fertilizer the same as the above ones. The results showed that TP,Olsen-P and PAC of treatments added with organic fertilizer were higher than those without organic fertilizer,and those of the treatments applied with phosphate fertilizer were higher than those of no phosphate fertilizer. With the increase of years,soil P pool decreased due to crop absorption,nutrient loss and morphological transformation and other causes under the treatments of without and only phosphate fertilizer,while remained stable under the treatments added with organic fertilizer. The PAC values were generally lower in fluvo-aquic soil,and it could be improved by the application of organic fertilizer. On the whole,the application of chemical phosphate fertilizer combined with organic fertilizer could improve the phosphorus content in soil and ensure the supply of phosphorus nutrition. This study would provide scientific basis for fertilization management and soil fertility in fluvo-aquic soil. | yingpeng zhang gang duan cuiping sun ziwen zhong ming sun yongping jing jiafa luo luji bo yan li | 2018 | Agricultural Biotechnology2018,7,2: | 1 |
| 12 | Monteggia equivalent lesion in children:a narrative review显示文摘Background Monteggia equivalent lesion represents a group of injury or combined injury patterns that resemble the Monteggia lesion in its presentations and mechanisms.Unlike Monteggia lesions,the equivalent ones,which share vague definitions and mostly occur as sporadic single case reports in the literature,have not been thoroughly reviewed since Bado first proposed the term,especially in the pediatric population.The objective of this review was to elucidate the definition by elaborating on its clinical styles and thus analyzing the mechanism,diagnosis,and management through related literature.Data sources Based on the terms of‘Monteggia equivalent’,‘radial neck fracture’and‘pediatric’,all of the related literature was searched on the PubMed and Google Scholar search engine.Results The advance of the definitions for pediatric Monteggia equivalent lesion(PMEL)was reviewed.The functional roles of the ulnar and the related mechanism theories in this injury were analyzed.The status of the radiocapitellar joint in this injury was emphasized.According to the previous statements,a new classification model was proposed and proper diagnosis and treatment approaches were suggested.Conclusions PMEL should be defined as an ulnar fracture at any level combined with a proximal radial fracture.According to the status of the radiocapitellar joint,it could be divided into three groups.The occult ulnar bowing and delayed radial head dislocation should be a serious concern of orthopedists.Surgical need is usually warranted.Maintaining the ulnar length and securing the radiocapitellar joint are highly recommended. | Lujie Xu Wensong Ye Haibing Li Jingfang Xu Weiwei Zhu Zhefeng Zhen Yi Yang | 2021 | World Journal of Pediatric Surgery2021,4,3: | 0 |
| 13 | Research and Application of Image Recognition Technology in Microscopy Diagnosis of Catalytic Cracking Catalysts显示文摘The image processing and recognition technology is used in the micrographic diagnosis of the FCC catalyst. By quickly analyzing the image and quickly obtaining the analysis result of the catalyst property, the accident of the FCC unit may be alerted. In this paper, the image recognition technology is used to better diagnose the catalytic cracking catalyst. | Li Lujie | 2019 | China Petroleum Processing & Petrochemical Technology2019,21,2: | 0 |
| 14 | Physical regulation of copper catalyst with a hydrophobic promoter for enhancing CO_(2)hydrogenation to methanol显示文摘The hydrogenation of CO_(2)to methanol,which is restricted by water products,requires a selective removal of water from the reaction system.Here,we show that physically combining hydrophobic polydivinylbenzene with a copper catalyst supported by silica can increase methanol production and CO_(2)conversion.Mechanistic investigation reveals that the hydrophobic promoter could hinder the oxidation of copper surface by water,maintaining a small fraction of metallic copper species on the copper surface with abundant Cu^(δ+),resulting in high activity for the hydrogenation.Such a physically mixed catalyst survives the continuous test for 100 h owing to the thermal stability of the polydivinylbenzene promoter. | Hangjie Li Wei Fang Ling-Xiang Wang Yifeng Liu Lujie Liu Tulai Sun Ciqi Liao Yihan Zhu Liang Wang Feng-Shou Xiao | 2023 | The Innovation2023,4,4: | 0 |
| 15 | High areal capacity flexible sulfur cathode based on multi-functionalized super-aligned carbon nanotubes显示文摘Rational design of a robust carbon matrix has a profound impact on the performance of flexible/wearable lithium/sulfur batteries.Herein,we demonstrate a freestanding three-dimensional super-aligned carbon nanotube (SACNT) matrix reinforced with a multi-functionalized carbon coating for flexible,high-areal sulfur loading cathode.By employing the sulfur/nitrogen co-doped carbon (SNC)'glue',the joints in the SACNT scaffold are tightly welded together so that the overall mechanical strength of the electrode is significantly enhanced to withstand the repeated bending as well as the volume change during operation.The SNC also shows intriguing catalytic effect that lowers the energy barrier of Li ion transport,propelling a superior redox conversion efficiency.The resulting binder-free and current collector-free sulfur cathode exhibits a high reversible capacity of 1,079 mAh·g^-1 at 1 C,a high-rate capacity of ~ 800 mAh·g^-1 at 5 C,and an average capacity decay rate of 0.037% per cycle at 2 C for 1,500 cycles.Impressively,a large-areal flexible Li/S pouch cell based on such mechanically robust cathode exhibits excellent capacity retention under arbitrary bending conditions.With a high areal sulfur loading of 7 mg·cm^-2,the large-areal flexible cathode delivers an outstanding areal capacity of 6.3 mAh·cm^-2 at 0.5 C (5.86 mA·cm^-2),showing its promise for realizing practical high energy density flexible Li/S batteries. | Lujie Jia Jian Wang Zijin Chen Yipeng Su Wei Zhao Datao Wang Yang Wei Kaili Jiang Jiaping Wang Yang Wu Jia Li Wenhui Duan Shoushan Fan Yuegang Zhang | 2019 | Nano Research2019,12,5: | 0 |
| 16 | Unfolding the structure-property relationships of Li_(2)S anchoring on two-dimensional materials with high-throughput calculations and machine learning显示文摘Lithium-sulfur(Li-S)batteries are notable for their high theoretical energy density,but the‘shuttle effect’and the limited conversion kinetics of Li-S species can downgrade their actual performance.An essential strategy is to design anchoring materials(AMs)to appropriately adsorb Li-S species.Herein,we propose a new three-procedure protocol,named InfoAd(Informative Adsorption)to evaluate the anchoring of Li_(2)S on two-dimensional(2D)materials and disclose the underlying importance of material features by combining high-throughput calculation workflow and machine learning(ML).In this paradigm,we calculate the anchoring of Li_(2)S on 12552D A_(x)B_(y)(B in the VIA/VIIA group)materials and pick out 44(un)reported nontoxic 2D binary A_(x)B_(y)AMs,in which the importance of the geometric features on the anchoring effect is revealed by ML for the first time.We develop a new Infograph model for crystals to accurately predict whether a material has a moderate binding with Li_(2)S and extend it to all 2D materials.Our InfoAd protocol elucidates the underlying structure-property relationship of Li_(2)S adsorption on 2D materials and provides a general research framework of adsorption-related materials for catalysis and energy/substance storage. | Lujie Jin Hongshuai Wang Hao Zhao Yujin Ji Youyong Li | 2023 | Journal of Energy Chemistry2023,,7: | 0 |
| 17 | SIRT5 is important for bacterial infection by regulating insulin secretion and glucose homeostasis显示文摘Dear Editor,Recent studies indicate that cellular metabolism plays a key role in supporting immune cell development,maintenance and function(Norata et al.,2015).For example,sensing of microbial ligands by macrophages triggers increased glucose metabolism,which delivers energy to support antimicrobial inflammation and the production of cytokines.This effect further enhances the generation of mitochondrial reactive oxygen species(ROS)to fight infections. | Cuiping Zhang Ke Wang Zuojian Hu Lujie Yang Bin Wei Shan Li Xue Qin Pengyuan Yang Hongxiu Yu | 2020 | Protein & Cell2020,11,11: | 0 |
| 18 | Manufacturing N,O-carboxymethyl chitosan-reduced graphene oxide under freeze-dying for performance improvement of Li-S battery显示文摘Lithium-sulfur(Li-S) batteries can provide far higher energy density than currently commercialized lithium ion batteries, but challenges remain before it they are used in practice.One of the challenges is the shuttle effect that originates from soluble intermediates, like lithium polysulfides. To address this issue, we report a novel laminar composite, N,O-carboxymethyl chitosan-reduced graphene oxide(CC-rGO), which is manufactured via the self-assembly of CC onto GO and subsequent reduction of GO under an extreme condition of 1 Pa and-50°C. The synthesized laminar CC-rGO composite is mixed with acetylene black(AB) and coated on a commercial polypropylene(PP) membrane, resulting in a separator(CC-rGO/AB/PP) that can not only completely suppress the polysulfides penetration, but also can accelerate the lithium ion transportation, providing a Li-S battery with excellent cyclic stability and rate capability. As confirmed by theoretic simulations, this unique feature of CC-rGO is attributed to its strong repulsive interaction to polysulfide anions and its benefit for fast lithium ion transportation through the paths paved by the heteroatoms in CC. | Zhibin Jiang Lujie Jin Xiying Jian Jinxia Huang Hongshuai Wang Binhong Wu Kang Wang Ling Chen Youyong Li Xiang Liu Weishan Li | 2023 | International Journal of Extreme Manufacturing2023,5,1: | 0 |
| 19 | Efficient screening framework for organic solar cells with deep learning and ensemble learning显示文摘Organic photovoltaics have attracted worldwide interest due to their unique advantages in developing low-cost,lightweight,and flexible power sources.Functional molecular design and synthesis have been put forward to accelerate the discovery of ideal organic semiconductors.However,it is extremely expensive to conduct experimental screening of the wide organic compound space.Here we develop a framework by combining a deep learning model(graph neural network)and an ensemble learning model(Light Gradient Boosting Machine),which enables rapid and accurate screening of organic photovoltaic molecules.This framework establishes the relationship between molecular structure,molecular properties,and device efficiency.Our framework evaluates the chemical structure of the organic photovoltaic molecules directly and accurately.Since it does not involve density functional theory calculations,it makes fast predictions.The reliability of our framework is verified with data from previous reports and our newly synthesized organic molecules.Our work provides an efficient method for developing new organic optoelectronic materials. | Hongshuai Wang Jie Feng Zhihao Dong Lujie Jin Miaomiao Li Jianyu Yuan Youyong Li | 2023 | npj Computational Materials2023,,1: | 0 |
| 20 | Application of Big Data Technology in Evaluation of Operating Status of High-pressure Hydrogenation Heat Exchanger显示文摘The high-pressure hydrogenation heat exchanger is an important equipment of the refinery, but it is exposed to the problem of leakage caused by ammonium salt corrosion. Therefore, it is very important to evaluate the operating status of the hydrogenation heat exchanger. To improve the method for evaluating the operating status of hydrogenation heat exchangers by using the traditional method, this paper proposes a new method for evaluating the operation of hydrogenation heat exchangers based on big data. To address the noisy data common in the industry, this paper proposes an automated noisy interval detection algorithm. To deal with the problem that the sensor parameters have voluminous and unrelated dimensions, this paper proposes a key parameter detection algorithm based on the Pearson correlation coefficient. Finally, this paper presents a system-based health scoring algorithm based on PCA(Principal Component Analysis) to assist site operators in assessing the health of hydrogenation heat exchangers. The evaluation of the operating status of the hydrorefining heat exchange device based on big data technology will help the operators to more accurately grasp the status of the industrial system and have positive guiding significance for the early warning of the failure. | Li Lujie Liu Xu Du Rui Xu Peng | 2018 | China Petroleum Processing & Petrochemical Technology2018,20,3: | 0 |