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7篇 您的检索式:作者名="Yuan Zhuan"
    题名 作者 年代 出处 被引量
1Large-field high-resolution two-photon digital scanned light-sheet microscopy显示文摘Weijian Zong Jia Zhao Xuanyang Chen Yuan Lin Huixia Ren Yunfeng Zhang Ming Fan Zhuan Zhou Heping Cheng Yujie Sun Liangyi Chen 2015Cell Research2015,25,2:12
2Sawdust discharge rate from aerated hoppers显示文摘This paper presents a numerical and experimental study of the discharge rate of sawdust from an aerated hopper as an important parameter in many industrial processes involving the handling of other granular materials. Numerical experiments are conducted by means of an Eulerian-Eulerian approach coupled with the kinetic theory of granular fiow(KTGF) . Emphasis is given to the effects of particle size,hopper outlet width,hopper half angle,aeration height and air fiow rate. The results show that the discharge rate is significantly affected by hopper outlet width,particle size and air fiow rate,but is not sensitive to the hopper half angle and aeration height:increasing hopper outlet width or air fiow rate increases dis charge rate,while increasing particle size decreases discharge rate. Close agreement between numerical predictions and experimental results is obtained.Pan Chen Zhulin Yuan Chien-Song Chyang Fu-Xiong Zhuan 2011Particuology2011,9,3:2
3The MING proposal at SHINE:megahertz cavity enhanced X‑ray generation显示文摘The cavity-based X-ray free-electron laser(XFEL)has promise in producing fully coherent pulses with a bandwidth of a few meV and very stable intensity,whereas the currently existing self-amplified spontaneous emission(SASE)XFEL is capable of generating ultra-short pulses with chaotic spectra.In general,a cavity-based XFEL can provide a spectral brightness three orders of magnitude higher than that of the SASE mode,thereby opening a new door for cutting-edge scientific research.With the development of superconducting MHz repetition-rate XFEL facilities such as FLASH,European-XFEL,LCLS-II,and SHINE,practical cavity-based XFEL operations are becoming increasingly achievable.In this study,megahertz cavity enhanced X-ray generation(MING)is proposed based on China’s first hard XFEL facility-SHINE,which we refer to as MING@SHINE.Nan‑Shun Huang Zi‑Peng Liu Bang‑Jie Deng Zi‑Han Zhu Shao‑Hua Li Tao Liu Zheng Qi Jia‑Wei Yan Wei Zhang Sheng‑Wang Xiang Yang‑Yang Lei Ya Zhu Yong‑Zhou He Qi‑Bing Yuan Fei Gao Rong‑Bing Deng Sen Sun Zhi‑Di Lei Zhi‑Qiang Jiang Meng‑Qi Duan Yuan Zhuan Xue‑Fang Huang Peng‑Cheng Dong Zhong‑Liang Li Shang‑Yu Si Lian Xue Si Chen Yong‑Fang Liu Ya‑Jun Tong Hai‑Xiao Deng Zhen‑Tang Zhao 2023Nuclear Science and Techniques2023,34,1:2
4Targeted Micellar Phthalocyanine for Lymph Node Metastasis Homing and Photothermal Therapy in an Orthotopic Colorectal Tumor Model显示文摘Tumor lymph node(LN)metastasis seriously affects the treatment prognosis.Studies have shown that nanoparticles with size of sub-50 nm can directly penetrate into LN metastases after intravenous administration.Here,we speculate through introducing targeting capacity,the nanoparticle accumulation in LN metastases would be further enhanced for improved local treatment such as photothermal therapy.Trastuzumabtargeted micelles(<50 nm)were formulated using a unique surfactantstripping approach that yielded concentrated phthalocyanines with strong near-infrared absorption.Targeted micellar phthalocyanine(T-MP)was an effective photothermal transducer and ablated HT-29 cells in vitro.A HER2-expressing colorectal cancer cell line(HT-29)was used to establish an orthotopic mouse model that developed metastatic disease in mesenteric sentinel LN.T-MP accumulated more in the LN metastases compared to the micelles conjugated with control IgG.Following surgical resection of the primary tumor,minimally invasive photothermal treatment of the metastatic LN with T-MP,but not the control micelles,extended mouse survival.Our findings demonstrate for the first time that targeted small-sized nanoparticles have potential to enable superior paradigms for dealing with LN metastases.Hai‑Yi Feng Yihang Yuan Yunpeng Zhang Hai‑Jun Liu Xiao Dong Si‑Cong Yang Xue‑Liang Liu Xing Lai Mao‑Hua Zhu Jue Wang Qin Lu Quanjun Lin Hong‑Zhuan Chen Jonathan F.Lovell Peng Sun Chao Fang 2021Nano-Micro Letters2021,13,11:1
5SYNTHESES OF TETRAHEDRAL METAL CLUSTER COMPOUNDS显示文摘The carbyne compound [Br(CO)2(Py)2Mo(≡CC6H5)] (Py=pyridine) (1a) reacts with Co2 (CO)8, Fe2(CO)9 and Mn2 (CO)10 to give tetrahedral tri-metal cluster compounds Co2Mo(μ3-CC6H5)Br(CO)8(Py)2 (2), Fe2Mo(μ3-CC6H5) Br(CO)9(Py)2 (3) and Mn2Mo(μ3-CC6H5)Br(CO)10 (Py)2 (4) respectively. Tri-metal cluster compound Co2Mo(μ3-CC6H5)Br(CO)8-(bipy) (bipy=α,α’dipyridyl) (5) is prepared in a similar reaction sequence from [Br(CO)2(bipy)Mo(≡CC6H5)] (1b) and Co2(CO)8. IR, 1H and 13C NMR spectral data of these compounds are reported and discussed. The crystal structure of compound (5) has been determined by X-ray diffraction.Yuan Qi YIN~*, Hong Sui SUN and Zhuan Yun ZHAO Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, Lanzhou 730000 Laboratory of Organometallic Chemistry, Shanghai Institute of Organic Chemistry, Chinese Academy of Sciences, Shanghai 200032 1992Chinese Chemical Letters1992,3,7:0
6Expansion Reaction of μ-FcCCHCo_2(CO)_6 with Benzylideneacetonetricarbonyliron, and Molecular Structure of μ_3-FcCHCFeCo_2(CO)_9显示文摘The vinylidene-bridged cluster μ3-FcCHCFeCo2(CO)9 2 was prepared by the expansionreaction of ferrocenyl-acetylene dicobalt complex μ-FcCCHCo2(CO)6 1. Benzylideneacetone-tricarbonyliron [(BDA)Fe(CO)3] was used as the source of Fe(CO)3. The molecular structure of thecluster 2 was detendned by x-ray structural analysis.Shu Lin WU Er Run DING Jie ZHANG Zhuan Yun ZHAO Yuan Qi YINand Jie SUN(Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, Lanzhou 730000)(Shanghai Institute of Organic Chemistry, Chinese Academy of Sciences, Shanghai 200032) 1998Chinese Chemical Letters1998,9,6:0
7SYNTHESIS AND CHARACTER OF NEW SWEET DIPEPTIDE ESTERS显示文摘SYNTHESISANDCHARACTEROFNEWSWEETDIPEPTIDEESTERS¥ZhuanFangYUAN;TongShengZHU;andJingYuLAI(DepartmentofChemicalEngineering,WuxiIn...Zhuan Fang YUAN Tong Sheng ZHU and Jing Yu LAI (Department of Chemical Engineering, Wuxi Institute of Light Industry, Wuxi,214036) 1995Chinese Chemical Letters1995,6,5:0
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