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| 1 | Influence of Vehicle Parameters on Critical Hunting Speed Based on Ruzicka Model显示文摘While introducing foreign advanced technology and cooperating with Chinese famous research institutes,the high-speed vehicles are designed and take the major task of passenger transport in China.In high-speed vehicle,the characteristic of shock absorber is an important parameter which determines overall behavior of the vehicle.The most existing researches neglect the influence of the series stiffness of the shock absorber on the vehicle dynamic behavior and have one-sided views on the equivalent conicity of wheel tread.In this paper,a high speed passenger vehicle in China is modeled to investigate the effect of the parameters taking series hydraulic shock absorber stiffness into consideration on Ruzicka model.Using the vehicle dynamic model,the effect of main suspension parameters on critical speed is studied.In order to verify the reasonableness of shock absorber parameter settings,vibration isolation characteristics are calculated and the relationship between suspension parameters and the vehicle critical hunting speed is studied.To study the influence of equivalent conicity on vehicle dynamic behavior,a series of wheel treads with different conicities are set and the vehicle critical hunting speeds with different wheel treads are calculated.The discipline between the equivalent conicity of wheel tread and critical speed are obtained in vehicle nonlinear system.The research results show that the critical speed of vehicle much depends on wheelset positioning stiffness and anti-hunting motion damper,and the series stiffness produces notable effect on the vehicle dynamic behavior.The critical speed has a peak value with the equivalent conicity increasing,which is different from the traditional opinion in which the critical speed will decrease with the conicity increasing.The relationship between critical speed and conicity of wheel tread is effected by the suspension parameters of the vehicle.The study results obtained offer a method and useful data to designing the parameters of the high speed vehicle and simulation study. | CUI Dabin LI Li JIN Xuesong XIAO Xinbiao DING Junjun | 2012 | Chinese Journal of Mechanical Engineering2012,25,3: | 12 |
| 2 | Divergent Projection Patterns Revealed by Reconstruction of Individual Neurons in Orbitofrontal Cortex显示文摘The orbitofrontal cortex(OFC)is involved in diverse brain functions via its extensive projections to multiple target regions.There is a growing understanding of the overall outputs of the OFC at the population level,but reports of the projection patterns of individual OFC neurons across different cortical layers remain rare.Here,by combining neuronal sparse and bright labeling with a whole-brain florescence imaging system(fMOST),we obtained an uninterrupted three-dimensional whole-brain dataset and achieved the full morphological reconstruction of 25 OFC pyramidal neurons.We compared the wholebrain projection targets of these individual OFC neurons in different cortical layers as well as in the same cortical layer.We found cortical layer-dependent projections characterized by divergent patterns for information delivery.Our study not only provides a structural basis for understanding the principles of laminar organizations in the OFC,but also provides clues for future functional and behavioral studies on OFC pyramidal neurons. | Junjun Wang Pei Sun Xiaohua Lv Sen Jin Anan Li Jianxia Kuang Ning Li Yadong Gang Rui Guo Shaoqun Zeng Fuqiang Xu Yu-Hui Zhang | 2021 | Neuroscience Bulletin2021,37,4: | 5 |
| 3 | Coordinated Secondary Control for Autonomous Hybrid Three-port AC/DC/DS Microgrid显示文摘This paper presents a coordinated secondary control(CSC)strategy for distributed power management for an autonomous hybrid three-port AC/DC/DS microgrid.The proposed CSC is on top of a generalized primary control(GPC),which consists of local power sharing(LPS)control within an individual AC or DC subgrid,global power sharing(GPS)control throughout the AC/DC subgrids,and storage power sharing(SPS)control in a distributed storage(DS)network.The CSC along with the GPC uses the local frequency/voltage deviations and offers decentralized power management with enhanced overall reliability.To eliminate the inherent frequency/voltage deviations in GPC and restore to their nominal values,a secondary control is normally applied to all distributed generators(DGs),which would degrade the performance of decentralized power management.To overcome this concern,a CSC strategy is proposed to concurrently restore frequency/voltage and re-establish a distributed power management by means of limited information exchange through the low-bandwidth communication links.The proposed control scheme has been verified by both simulations and controller hardware-in-the-loop(CHIL)experiments in an OPAL-RT digital simulator system. | Chi Jin Junjun Wang Peng Wang | 2018 | CSEE Journal of Power and Energy Systems2018,4,1: | 3 |
| 4 | Radiation-hardened property of single-walled carbon nanotube film-based field-effect transistors under low-energy proton irradiation显示文摘Strong C-C bonds,nanoscale cross-section and low atomic number make single-walled carbon nanotubes(SWCNTs)a potential candidate material for integrated circuits(ICs)applied in outer space.However,very little work combines the simulation calculations with the electrical measurements of SWCNT field-effect transistors(FETs),which limits further understanding on the mechanisms of radiation effects.Here,SWCNT film-based FETs were fabricated to explore the total ionizing dose(TID)and displacement damage effect on the electrical performance under low-energy proton irradiation with different fluences up to 1×1015 p/cm2.Large negative shift of the threshold voltage and obvious decrease of the on-state current verified the TID effect caused in the oxide layer.The stability of the subthreshold swing and the off-state current reveals that the displacement damage caused in the CNT layer is not serious,which proves that the CNT film is radiation-hardened.Specially,according to the simulation,we found the displacement damage caused by protons is different in the source/drain contact area and channel area,leading to varying degrees of change for the contact resistance and sheet resistance.Having analyzed the simulation results and electrical measurements,we explained the low-energy proton irradiation mechanism of the CNT FETs,which is essential for the construction of radiation-hardened CNT film-based ICs for aircrafts. | Xiaorui Zhang Huiping Zhu Song’ang Peng Guodong Xiong Chaoyi Zhu Xinnan Huang Shurui Cao Junjun Zhang Yunpeng Yan Yao Yao Dayong Zhang Jingyuan Shi Lei Wang Bo Li Zhi Jin | 2021 | Journal of Semiconductors2021,42,11: | 2 |
| 5 | Passive protection of shrimp against white spot syndrome virus (WSSV) using specic antibody from egg yolk of chickens immunized with inactivated virus or a WSSV-DNA vaccine显示文摘 | Yanan Lu Junjun Liu Liji Jin | 2008 | Fish & Shellsh Immunology2008,25,: | 1 |
| 6 | Effect of trace earth element Er on high pure AI 显示文摘 | J Yang Junjun Nie Zuoren Jin Tounan Fu Jingbo Yang Junjun Zuo Tieyong | 2003 | Transacdon Nonferrous Metals Society of China2003,13,5: | 1 |
| 7 | Effect of trace earth element Er on high pure AI显示文摘 | Yang Junjun Nie Zuoren Jin Tounan | 2003 | Transaction Nonferrous Metals So- ciety of China2003,13,5: | 1 |
| 8 | Effect of trace rare earth element Er on high pure A1 显示文摘 | YANG Junjun NIE Zuoren JIN Tounan | 2003 | Trans Nonferrous Met Soc Chin2003,13,5: | 1 |
| 9 | Effect of trace rare earth element Er on high pure A1 显示文摘 | Yang Junjun Nie Zuoren Jin Tounan | 2003 | Transaction of Nonferrous Metals Society of China2003,13,5: | 1 |
| 10 | Effect of trace earth element Er on high pure Al 显示文摘 | Yang Junjun Nie Zuoren Jin Tounan Fu Jingho Yang Junjun Zuo Tieyong | 2003 | Transaction Nonferrous Metals Society of China2003,13,5: | 1 |
| 11 | Development on research of advanced rare-earth aluminum alloy显示文摘 | Nie Zuoren Jin Tounan Zou Jingxia Fu Jinbo Yang Junjun Zuo Tieyong | 2003 | Transaction Nonferrous Metals Society of China2003,13,3: | 1 |
| 12 | Effect of trace earth element Er on high pure Al显示文摘 | Yang Junjun Nie Zuoren Jin Tounan Fu Jingbo Yang Junjun Zuo Tieyong | 2003 | Transaction Nonferrous Metals Society of China2003,13,5: | 1 |
| 13 | Effect of trace rare earth element Er on high pure Al 显示文摘 | YANG Junjun NIE Zuoren JIN Tounan | 2003 | Trans Nonferrous Met Soc China2003,13,5: | 1 |
| 14 | LRH-1 senses signaling from phosphatidylcholine to regulate the expansion growth of digestive organs via synergy with Wnt/β-catenin signaling in zebrafish显示文摘Liver receptor homolog-1(LRH-1)is an orphan nuclear receptor that is critical for the growth and proliferation of cancer cells and other biological processes,including lipid transportation and metabolism,sexual determination and steroidogenesis.However,because homozygous lrh-1^(-/-) mice die in utero,the regulatory mechanisms involved in embryonic development mediated by this receptor are poorly understood.In the present study,we performed transcription activator-like effector nuclease(TALEN)-mediated loss-of-function assays,taking advantage of zebrafish external fertilization,to investigate the function of lrh-1.The digestive organs were affected by lrh-1 depletion as a result of cellcycle arrest(at the checkpoint of G1 to S phase),but not cell apoptosis.Biochemical analysis revealed that LRH-1 augments the transcriptional activity of b-catenin 1 and 2 via physical interactions.Screening the specific ligand(s)sensed by LRH-1 during organogenesis revealed that phosphatidylcholine(PC),a potential ligand,is the upstream target of LRH-1 during endoderm development.These data provide evidence for the crosstalk between the PC/LRH-1 and Wnt/β-catenin signaling pathways during the expansion growth of endoderm organs. | Gang Zhai Jia Song Tingting Shu Junjun Yan Xia Jin Jiangyan He Zhan Yin | 2017 | Journal of Genetics and Genomics2017,44,6: | 0 |
| 15 | Physiological and molecular bases of the boron deficiency response in tomatoes显示文摘Boron is an essential microelement for plant growth.Tomato is one of the most cultivated fruits and vegetables in the world,and boron deficiency severely inhibits its yield and quality.However,the mechanism of tomato in response to boron deficiency remains largely unclear.Here,we investigated the physiological and molecular bases of the boron deficiency response in hydroponically grown tomato seedlings.Boron deficiency repressed the expression of genes associated with nitrogen metabolism,while it induced the expression of genes related to the pentose phosphate pathway,thereby altering carbon flow to provide energy for plants to cope with stress.Boron deficiency increased the accumulation of copper,manganese and iron,thereby maintaining chlorophyll content and photosynthetic efficiency at the early stage of stress.In addition,boron deficiency downregulated the expression of genes involved in cell wall organization and reduced the contents of pectin and cellulose in roots,ultimately retarding root growth.Furthermore,boron deficiency markedly altered phytohormone levels and signaling pathways in roots.The contents of jasmonic acid,jasmonoy1-L-isoleucine,trans-zeatin riboside,abscisic acid,salicylic acid,and SA glucoside were decreased;in contrast,the contents of isopentenyladenine riboside and ethylene precursor 1-aminocyclopropane-1-carboxylic acid were increased in the roots of boron-deficient tomato plants.These results collectively indicate that tomato roots reprogram carbon/nitrogen metabolism,alter cell wall components and modulate phytohormone pathways to survive boron deficiency.This study provides a theoretical basis for further elucidating the adaptive mechanism of tomato in response to boron deficiency. | Junjun Li Huihui Fan Qianqian Song Lili Jing Hao Yu Ruishan Li Ping Zhang Fei Liu Weimin Li Liangliang Sun Jin Xu | 2023 | Horticulture Research2023,10,12: | 0 |
| 16 | Low-threshold lasing in a plasmonic laser using nanoplate InGaN/GaN显示文摘Plasmonic nanolaser as a new type of ultra-small laser,has gain wide interests due to its breaking diffraction limit of light and fast carrier dynamics characters.Normally,the main problem that need to be solved for plasmonic nanolaser is high loss induced by optical and ohmic losses,which leads to the low quality factor.In this work,InGaN/GaN nanoplate plasmonic nanolaser with large interface area were designed and fabricated,where the overlap between SPs and excitons can be enhanced.The lasing threshold is calculated to be~6.36 kW/cm^(2),where the full width at half maximum(FWHM)drops from 27 to 4 nm.And the fast decay time at 502 nm(sharp peak of stimulated lasing)is estimated to be 0.42 ns.Enhanced lasing characters are mainly attributed to the strong confinement of electromagnetic wave in the low refractive index material,which improve the near field coupling between SPs and excitons.Such plasmonic laser should be useful in data storage applications,biological application,light communication,especially for optoelectronic devices integrated into a system on a chip. | Ting Zhi Tao Tao Xiaoyan Liu Junjun Xue Jin Wang Zhikuo Tao Yi Li Zili Xie Bin Liu | 2021 | Journal of Semiconductors2021,42,12: | 0 |
| 17 | Honokiol attenuates acetaminophen-induced acute liver injury by inhibiting hepatic CYP1A2 activity and improving liver mitochondrial dysfunction显示文摘Objective:Acetaminophen(APAP)overdose is a common cause of liver injury.This study aimed to investigate the protective effect of honokiol(Hon)against APAP-induced hepatotoxicity and its potential mechanism.Methods:C57BL/6 mice were administrated with Hon(10 and 30 mg/kg)after APAP(300 mg/kg)treatment.On 1.5 h and 5 h after Hon treatment,mice were sacrificed.Serum and liver were collected.And then,liver injury-related indexes,APAP metabolism-related indexes,mitochondrial respiratory chain function-related indexes,and mitochondrial membrane function-related protein expression were evaluated.Results:It was found that Hon significantly decreased serum alanine aminotransferase(ALT)/aspartate aminotransferase(AST)activity and glutathione(GSH)depletion,increased hepatic catalase(CAT)and GSH peroxidase(GSH-Px)activities,reduced hepatic MDA and 3-nitrotyrosine contents,inhibited hepatic CYP1A2 activity and APAP protein adducts(APAP-CYS)formation.Meanwhile,oxidative phosphorylation capacity of complex I and electron transfer capacity of complex IV in mitochondrial respiratory chain was increased,whereas the release of H2O2 in the mitochondria was decreased following Hon treatment.Furthermore,Hon markedly down-regulated p-JNK in both cytosol and mitochondria,and obviously inhibited the release of apoptosis inducing factor(AIF)and endonuclease G(EndoG)from mitochondria to cytosol.Conclusion:Hon alleviated APAP-induced liver injury through the following pathways:Reducing the production of APAP-CYS by inhibiting CYP1A2 activity;Ameliorating hepatic oxidative stress by increasing the levels of hepatic CAT,GSH-Px and GSH;Improving mitochondrial respiratory chain function by promoting oxidative phosphorylation capacity of complex I and electron transfer capacity of complex IV;Improving the function of mitochondrial membrane by inhibiting p-JNK and its translocation to mitochondria,thereby reducing the release of AIF and EndoG. | Xiaolei Miao Chengting Jin Jiao Liu Junjun Wang Yong Chen | 2023 | Chinese Herbal Medicines2023,15,2: | 0 |
| 18 | Facile Modification on Buried Interface for Highly Efficient and Stable FASn_(0.5)Pb_(0.5)I_(3) Perovskite Solar Cells with NiOx Hole-Transport layers显示文摘Formamidinium(FA)-based Sn-Pb perovskite solar cells(FAPb_(0.5)Sn_(0.5)I_(3) PSCs)with ideal bandgap and impressive thermal stability have caught enormous attention recently.However,it still suffers from the challenge of realizing high efficiency due to the surface imperfections of the transport materials and the energy-level mismatch between functional contacts.Herein,it is demonstrated that the modification on buried interface with alkali metal salts is a viable strategy to alleviate these issues.We systematically investigate the role of three alkali metal bromide salts(NaBr,KBr,CsBr)by burying them between the NiOx hole transport layer(HTL)and the perovskite light-absorbing layer,which can effectively passivate interface defects,improve energy-level matching and release the internal residual strain in perovskite layers.The device with CsBr buffer layer exhibits the best power conversion efficiency(PCE)approaching 20%,which is one of the highest efficiencies for FA-based Sn-Pb PSCs employing NiO_(x) HTLs.Impressively,the long-term storage stability of the unencapsulated device is also greatly boosted.Our work provides an efficient strategy to prepare desired FA-based ideal-bandgap Sn-Pb PSCs which could be applied in tandem solar cells. | Hui Zhang Yuan Zhou Tonghui Guo Xiang Zhang Zhenkun Zhu Junjun Jin Xiaxia Cui Dan Zhang Zhen Wang Lin Li Nai Wang Guanqi Tang Qidong Tai | 2023 | Chinese Journal of Chemistry2023,41,23: | 0 |
| 19 | Al-empowered integrative structural characterization of m^(6)A methyltransferase complex显示文摘Dear Editor,N^(6)-methyladenosine(m^(6)A)is the most abundant and prevalent internal modification in mRNA.^(1)In mammals,m^(6)A exerts pivotal roles in posttranscriptional regulation and its dysregulation is implicated in various diseases including cancer. | Xuhui Yan Kai Pei Zeyuan Guan Feiqing Liu Junjun Yan Xiaohuan Jin Qiang Wang Mengjun Hou Chun Tang Ping Yin | 2022 | Cell Research2022,32,12: | 0 |
| 20 | Intermediate phase assisted sequential deposition of reverse-graded quasi-2D alternating cation perovskites for MA-free perovskite solar cells显示文摘One-step deposition approaches have been widely applied and developed in the fabrication of quasi-2D perovskites.However,the regulation of quantum wells(QWs)and crystalline orientation is difficult and complicated when using this methodology.Sequential deposition is another widespread synthetic approach for preparing perovskite films and perovskite dimension engineering.In this article,δ-CsPbI_(3)intermediate phase assisted sequential(IPAS)deposition is successfully carried out to fabricate MA-free quasi-2D ACI perovskites.The amount of theδ-CsPbI_(3)intermediate phase in the PbI2 layer and the concentration of GAI molecule in the IPA solution both play important roles in the production of MA-free quasi-2D ACI perovskite films.The n value of the MA-free quasi-2D ACI perovskites can be adjusted,which affects the photovoltaic performance and device stability.Compared with one-step deposition,the MA-free quasi-2D ACI perovskites prepared via IPAS deposition have opposite reverse-graded QW distribution and improved vertical orientation,leading to a remarkable PEC of up to 18.86%and allowing the preparation of unpackaged devices with prominent working stability(80%,400 h).The underlying mechanism and crystallization pathway of IPAS deposition confirm that sequential deposition has unique superiority in regulating the QW distribution and crystalline orientation of quasi-2D perovskites. | Shaofu Wang Yumin Liu Junjie Zou Junjun Jin Yun Jiang Tao Zeng Wenyan Zhao Rong-Xiang He Bolei Chen Yu Chen Shuoxue Jin Hong-Xiang Li Zhipeng Xie Chang-An Wang Weiwei Sun Qiang Cao Xing-Zhong Zhao | 2023 | InfoMat2023,5,3: | 0 |