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11篇 您的检索式:作者名="Runze Shi"
    题名 作者 年代 出处 被引量
1Highly Dispersed Cobalt Nanoparticles Embedded in Nitrogen-Doped Graphitized Carbon for Fast and Durable Potassium Storage显示文摘Potassium-ion batteries(KIBs)have great potential for applications in large-scale energy storage devices.However,the larger radius of K+leads to sluggish kinetics and inferior cycling performance,severely restricting its practical applicability.Herein,we propose a rational strategy involving a Prussian blue analogue-derived graphitized carbon anode with fast and durable potassium storage capability,which is constructed by encapsulating cobalt nanoparticles in nitrogen-doped graphitized carbon(Co-NC).Both experimental and theoretical results show that N-doping effectively promotes the uniform dispersion of cobalt nanoparticles in the carbon matrix through Co-N bonds.Moreover,the cobalt nanoparticles and strong Co-N bonds synergistically form a threedimensional conductive network,increase the number of adsorption sites,and reduce the diffusion energy barrier,thereby facilitating the adsorption and the diffusion kinetics.These multiple effects lead to enhanced reversible capacities of 305 and 208.6 mAh g^−1 after 100 and 300 cycles at 0.05 and 0.1 A g^−1,respectively,demonstrating the applicability of the Co-NC anode for KIBs.Xiaodong Shi Zhenming Xu Cheng Han Runze Shi Xianwen Wu Bingan Lu Jiang Zhou Shuquan Liang 2021Nano-Micro Letters2021,13,2:4
2用高压氧治疗高原脱习服症的效果分析显示文摘目的:探讨用高压氧治疗高原脱习服症的临床效果。方法:对近期结束高原防守任务后赴临潼疗养院进行疗养治疗的31例高原官兵的临床资料进行回顾性研究。我们将这31例患者分为高压氧组和康复疗养组,其中,高压氧组有18例患者,康复疗养组有13例患者。我院对康复疗养组的患者进行康复疗养,在此基础上,对高压氧组的患者进行高压氧治疗。我们在患者入院时、进行治疗后的15天及30天记录其临床症状,并对其临床症状的改善情况进行评分,比较两组患者的评分结果。结果:在治疗后15天后,高压氧组患者的高原脱习服症状评分明显低于康复疗养组的患者,二者相比差异有显著性(P<0.05)。结论:在进行康复疗养的基础上用高压氧治疗高原脱习服症可明显地改善患者的症状。但该方法的治疗效果及成熟的治疗方案尚待进一步的研究。哈振德 Xu Li Shi Runze Guo Guanghui Song Wei Wang Junfang Zhang Quan 2014当代医药论丛2014,12,14:3
3Numerical study of the rotor thickness noise reduction based on the concept of sound field cancellation显示文摘Numerical studies were performed to investigate the mechanism and potential of several active rotors for reducing low-frequency in-plane thickness noise generated by rotating blades.A numerical method coupling the blade element theory,prescribed wake model and Fowcs Williams-Hawkings(FW-H)equation was established for rotor noise prediction.It is indicated that the excitation force on the blade tip can generate anti-noise that to partly cancel the in-plane thickness noise with an appropriate actuation law.Results from the phase,frequency and amplitude sweeps show that the excitation force direction and actuation law are the crucial factors affecting the noise reduction,which determine the noise reduction area in the elevation and azimuth directions,respectively.The active trailing-flap rotor can generate the in-plane excitation force,but because of large lift-drag ratio the anti-noise is mainly from the vertical lift,which is caused by flap deflection similar to a variable camber airfoil.For the harmonic control rotor and active twist rotor,the excitation force is also attributed to the vertical blade lift.The vertical force can reduce the noise near the rotor plane,it will also cause the noise increase in most other areas.Finally,two new active rotors were proposed to generate the in-plane chordwise and spanwise excitation force.With the modified actuation law,the noise in most areas around the rotor was reduced,which improved the acoustic characteristics of rotor significantly.Runze XIA Yongjie SHI Teng LI Guohua XU 2022Chinese Journal of Aeronautics2022,35,3:1
4The Solar Upper Transition Region Imager(SUTRI)Onboard the SATech-01 Satellite显示文摘The Solar Upper Transition Region Imager(SUTRI)onboard the Space Advanced Technology demonstration satellite(SATech-01),which was launched to a Sun-synchronous orbit at a height of~500 km in 2022 July,aims to test the on-orbit performance of our newly developed Sc/Si multi-layer reflecting mirror and the 2k×2k EUV CMOS imaging camera and to take full-disk solar images at the Ne VII 46.5 nm spectral line with a filter width of~3 nm.SUTRI employs a Ritchey-Chrétien optical system with an aperture of 18 cm.The on-orbit observations show that SUTRI images have a field of view of~416×416 and a moderate spatial resolution of~8″without an image stabilization system.The normal cadence of SUTRI images is 30 s and the solar observation time is about16 hr each day because the earth eclipse time accounts for about 1/3 of SATech-01's orbit period.Approximately15 GB data is acquired each day and made available online after processing.SUTRI images are valuable as the Ne VII 46.5 nm line is formed at a temperature regime of~0.5 MK in the solar atmosphere,which has rarely been sampled by existing solar imagers.SUTRI observations will establish connections between structures in the lower solar atmosphere and corona,and advance our understanding of various types of solar activity such as flares,filament eruptions,coronal jets and coronal mass ejections.Xianyong Bai Hui Tian Yuanyong Deng Zhanshan Wang Jianfeng Yang Xiaofeng Zhang Yonghe Zhang Runze Qi Nange Wang Yang Gao Jun Yu Chunling He Zhengxiang Shen Lun Shen Song Guo Zhenyong Hou Kaifan Ji Xingzi Bi Wei Duan Xiao Yang Jiaben Lin Ziyao Hu Qian Song Zihao Yang Yajie Chen Weidong Qiao Wei Ge Fu Li Lei Jin Jiawei He Xiaobo Chen Xiaocheng Zhu Junwang He Qi Shi Liu Liu Jinsong Li Dongxiao Xu Rui Liu Taijie Li Zhenggong Feng Yamin Wang Chengcheng Fan Shuo Liu Sifan Guo Zheng Sun Yuchuan Wu Haiyu Li Qi Yang Yuyang Ye Weichen Gu Jiali Wu Zhe Zhang Yue Yu Zeyi Ye Pengfeng Sheng Yifan Wang Wenbin Li Qiushi Huang Zhong Zhang 2023Research in Astronomy and Astrophysics2023,23,6:1
5Thermoelectric enhancement of p-type Si_(80)Ge_(20) alloy via co-compositing of dual oxides:Respective regulation for power factor and thermal conductivity byβ-Ga_(2)O_(3) and SiO_(2) aerogel powders显示文摘Si-based thermoelectric(TE)materials are exhibiting remarkable perspectives in self-energized applications with their special advantages.However,the relatively high total thermal conductivity(κ)prevents their TE enhancement.Here,a strategy of co-compositing dual oxides was implemented for enhancing the TE properties of p-type Si_(80)Ge_(20) bulks.Composited Ga2O_(3) was demonstrated to enhance the power factor(PF)due to the crystallization-induced effect of produced Ga by decomposition on SiGe matrix.Associating with compositing SiO_(2) aerogel(a-SiO_(2))powder,not only introduced the fine amorphous inclusions and decreased the grain size of host matrix,but also various nano morphologies were formed,i.e.,nano inclusions,precipitations,twin boundaries(TBs),and faults.Combining with the eutectic Ge,hierarchical scattering centers impeded the phonon transport comprehensively(decreasing the phonon group velocity(a v)and relaxation time)for reducing the lattice-induced thermal conductivity(lκ).As a result,a minimumκof 2.38 W·m^(−1)·K^(−1) was achieved,which is significantly dropped by 32.6%in contrast with that of the pristine counterpart.Ultimately,a maximal dimensionless figure of merit(ZT)of 0.9 was achieved at 600℃,which is better than those of most corresponding oxide-composited Si-based bulks.Huajun LAI Ying PENG Mengfei WANG Runze SHI Junliang CHEN Chengyan LIU Yifeng WANG Lei MIAO Haiqiao WEI 2023Journal of Advanced Ceramics2023,12,2:1
6一个基于深度学习的眼病和肺炎两大类疾病的AI诊断系统显示文摘文章简介本研究开发了一个基于深度学习框架能诊断致盲性视网膜疾病的人工智能(AI)诊断工具。而且,该AI诊断工具还可用于诊断小儿肺炎。这是一项将AI应用于医疗领域的重磅研究成果,有望高精确诊断多种可治疗性疾病。在眼科治疗中,视网膜OCT(光学相干断层扫描)成像技术是最常用的诊断技术之一。Daniel S.Kermany Michael Goldbaum Wenjia Cai Carolina C.S.Valentim Huiying Liang Sally L.Baxter Alex McKeown Ge Yang Xiaokang Wu Fangbing Yan Justin Dong Made K.Prasadha Jacqueline Pei Magdalene Y.L.Ting Jie Zhu Christina Li Sierra Hewett Jason Dong Ian Ziyar Alexander Shi Runze Zhang Rui Hou William Shi Xin Fu Yaou Duan Viet A.N. Huu Cindy Wen Edward D. Zhang Charlotte L. Zhang Oulan Li Xiaobo Wang Michael A. Singer Xiaodong Sun Jie Xu Ali Tafreshi M. Anthony Lewis Huimin Xia 张康 2019科学新闻2019,0,2:1
7Dynamic human retinal pigment epithelium(RPE)and choroid architecture based on single-cell transcriptomic landscape analysis显示文摘The retinal pigment epithelium(RPE)and choroid are located behind the human retina and have multiple functions in the human visual system.Knowledge of the RPE and choroid cells and their gene expression profiles are fundamental for understanding retinal disease mechanisms and therapeutic strategies.Here,we sequenced the RNA of about 0.3 million single cells from human RPE and choroids across two regions and seven ages,revealing regional and age differences within the human RPE and choroid.Cell–cell interactions highlight the broad connectivity networks between the RPE and different choroid cell types.Moreover,the transcription factors and their target genes change during aging.The coding of somatic variations increases during aging in the human RPE and choroid at the single-cell level.Moreover,we identified ELN as a candidate for improving RPE degeneration and choroidal structure during aging.The mapping of the molecular architecture of the human RPE and choroid improves our understanding of the human vision support system and offers potential insights into the intervention targets for retinal diseases.Lulin Huang Lin Ye Runze Li Shanshan Zhang Chao Qu Shujin Li Jie Li Mu Yang Biao Wu Ran Chen Guo Huang Bo Gong Zheng Li Hongjie Yang Man Yu Yi Shi Changguan Wang Wei Chen Zhenglin Yang 2023Genes & Diseases2023,10,6:0
8Design,Fabrication and Assembly of the Solar Upper Transition Region Imager(SUTRI)显示文摘The Solar Upper Transition Region Imager(SUTRI)focuses on the solar transition region to achieve dynamic imaging observation of the upper transition region.In this paper,we report the optical system design,mechanical design,ultrasmooth mirror manufacture and measurement,EUV multilayer film coating,prelaunch installation and calibration for the SUTRI payload at IPOE,Tongji University.Finally,the SUTRI carried by the SATech-01 satellite was successfully set to launch.All functions of this telescope were normal,and the observation results obtained in orbit were consistent with the design.Zhanshan Wang Jun Yu Runze Qi Chunling He Zhengxiang Shen Li Jiang Weichen Gu Jiali Wu Zhe Zhang Pengfeng Sheng Yifan Wang Yue Yu Zeyi Ye JingJing Xia Yujie Xing Hongfei Jiao Bin Ma Qiushi Huang Zhong Zhang Xianyong Bai Yuanyong Deng Hui Tian Nange Wang Lun Shen Song Guo Lei Jing Xiaobo Chen Yang Gao Xiaocheng Zhu Xiaofeng Zhang Junwang He Qi Shi Shuo Liu Xingzi Bi 2023Research in Astronomy and Astrophysics2023,23,9:0
9Deep Sc-RNA sequencing decoding the molecular dynamic architecture of the human retina显示文摘The human retina serves as a light detector and signals transmission tissue.Advanced insights into retinal disease mechanisms and therapeutic strategies require a deep understanding of healthy retina molecular events.Here,we sequenced the m RNA of over 0.6 million single cells from human retinas across six regions at nine different ages.Sixty cell sub-types have been identified from the human mature retinas with unique markers.We revealed regional and age differences of gene expression profiles within the human retina.Cell-cell interaction analysis indicated a rich synaptic connection within the retinal cells.Gene expression regulon analysis revealed the specific expression of transcription factors and their regulated genes in human retina cell types.Some of the gene’s expression,such as DKK3,are elevated in aged retinas.A further functional investigation suggested that over expression of DKK3 could impact mitochondrial stability.Overall,decoding the molecular dynamic architecture of the human retina improves our understanding of the vision system.Lulin Huang Runze Li Lin Ye Shanshan Zhang Huaping Tian Mingyan Du Chao Qu Shujin Li Jie Li Mu Yang Biao Wu Ran Chen Guo Huang Ling Zhong Hongjie Yang Man Yu Yi Shi Changguan Wang Houbin Zhang Wei Chen Zhenglin Yang 2023Science China(Life Sciences)2023,66,3:0
10Charge Transport through Peptides in Single-Molecule Electrical Measurements显示文摘Charge transport across the peptide chains is one of the vital processes in the biological systems,so understanding their charge transport properties is an indispensable prerequisite to explain the complex biochemical phenomenon.Here,we review the charge transport mechanism,the influence of the special groups and the experimental conditions on the charge transport through the peptide backbone by employing the single-molecule electrical measurements.Besides,we further review the recent progresses in charge transport properties of supramolecular interaction among the adjacent peptide chains.Finally,we discuss some experimental and theoretical contradictions existing in the charge transport through peptides and provide new inspiration for the future development of the bioelectronics at the single-molecule scale.Haining Zheng Feng Jiang Runze He Yang Yang Jia Shi Wenjing Hong 2019Chinese Journal of Chemistry2019,37,10:0
11Photo-induced carbon dioxide reduction on hexagonal tungsten oxide via an oxygen vacancies-involved process显示文摘Although converting the greenhouse gasses carbon dioxide(CO_(2))into solar fuels is regarded as a convenient means of solar energy storage,the intrinsic mechanism on how the high chemical inertness linear CO_(2)molecules is activated and converted on a semiconductor oxide is still elusive.Herein,by creating the oxygen vacancies on the typical hexagonal tungsten oxide(WO3),we realize the continuous photoinduced CO_(2)reduction to selectively produce CO under light irradiation,which was verified by isotope labeling experiment.Detailed oxygen vacancies evolution investigation indicates that light irradiation can simultaneously induce the in-situ formation of oxygen vacancies on hexagonal WO3,and the oxygen vacancies promote the adsorption and activation of CO_(2)molecules,leading to the CO_(2)reduction to CO on the hexagonal WO3via an oxygen vacancies-involved process.Besides,the existence of water further promotes the formation of CO_(2)reduction intermediate,further promote the CO_(2)photoreduction.Our work provides insight on the mechanism for converting CO_(2)into CO under light irradiation.Yi Wang Runze Liu Ming Shi Panwang Zhou Keli Han Can Li Rengui Li 2023Chinese Chemical Letters2023,34,1:0
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