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机器学习辅助减反膜结构设计与界面修饰协同优化的高效稳定钙钛矿太阳能电池
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作者 梁英 邓羽恒 +13 位作者 余士律 程家豪 宋嘉伟 姚俊 杨亦辰 张万雷 周文靖 张欣 沈文剑 梁桂杰 李彬 彭勇 胡润 李望南 《物理化学学报》 北大核心 2025年第9期73-82,共10页
近年来,单节钙钛矿太阳电池(PSCs)通过对功能层进行多元优化策略最小化能量损失使器件效率迅速提升,逐渐逼近肖克利-奎伊瑟(S-Q)理论效率极限。作为光管理策略的重要组成部分,减反射涂层(ARC)在降低光学能量损耗实现高效率方面发挥着关... 近年来,单节钙钛矿太阳电池(PSCs)通过对功能层进行多元优化策略最小化能量损失使器件效率迅速提升,逐渐逼近肖克利-奎伊瑟(S-Q)理论效率极限。作为光管理策略的重要组成部分,减反射涂层(ARC)在降低光学能量损耗实现高效率方面发挥着关键作用。开发出具有多功能的ARC,能够同时提升可见光透过率、抑制紫外光(UV)透射,并且在玻璃基底上具有优异附着性、耐磨性是目前研发的重点。本研究利用贝叶斯优化算法的机器学习方法指导超薄多层二氧化物ARC的结构设计。优化流程包括多层氧化物薄膜的参数化建模、采用传递矩阵法(TMM)的物理模拟,以及抗反射性能评估。经过优化的ARC采用100 nm SiO_(2)-10 nm TiO_(2)-10 nm SiO_(2)(STS)叠层结构,使导电玻璃基底在400–800 nm范围内的透光率提升了9.2%。该结构应用在PSCs中获得了最高96.94%的外量子效率,使短路电流密度和光电转换效率均提升了4%,紫外光照持续300 h后仍保持有初始效率的81.2%,而标样组的效率降至~69%,表明STS ARC具备有效的紫外光过滤性能。STS ARC经过国际标准测试具有超过9H的硬度和ISO 0级以及ASTM 5B级附着度,满足太阳电池户外应用需求。除光学能量损失外,钙钛矿表面缺陷态富集导致非辐射复合能量损失,同时也是晶格降解的起始位点。因此,本文采用3-脒基吡啶氢碘酸盐(3-PyADI)对界面缺陷进行钝化修饰,协同将PSCs的效率提升至24.44%,未封装的器件在大气环境下放置1000 h后保留初始效率的93%。本研究所提出的增透减反薄膜与钙钛矿界面修饰协同实现器件性能和稳定性的同步提升,为钙钛矿太阳电池的产业化发展探索出具有前景且实用的路径。 展开更多
关键词 机器学习 减反膜 光管理策略 钙钛矿太阳电池 界面修饰
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Detuning effect corrections using octupoles in diffraction-limited storage ring
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作者 Xuan Shouzhi Tian Shunqiang +2 位作者 Liu Xinzhong Gong Yihao Mao Linglong 《强激光与粒子束》 北大核心 2025年第7期72-82,共11页
The next generation of synchrotron radiation light sources features extremely low emittance,enabling the generation of synchrotron radiation with significantly higher brilliance,which facilitates the exploration of ma... The next generation of synchrotron radiation light sources features extremely low emittance,enabling the generation of synchrotron radiation with significantly higher brilliance,which facilitates the exploration of matter at smaller scales.However,the extremely low emittance results in stronger sextupole magnet strengths,leading to high natural chromaticity.This necessitates the use of sextupole magnets to correct the natural chromaticity.For the Shanghai Synchrotron Radiation Facility Upgrade(SSRF-U),a lattice was designed for the storage ring that can achieve an ultra-low natural emittance of 72.2 pm·rad at the beam energy of 3.5 GeV.However,the significant detuning effects,driven by high second-order resonant driving terms due to strong sextupoles,will degrade the performance of the facility.To resolve this issue,installation of octupoles in the SSRF-U storage ring has been planned.This paper presents the study results on configuration selection and optimization method for the octupoles.An optimal solution for the SSRF-U storage ring was obtained to effectively mitigate the amplitude-dependent tune shift and the second-order chromaticity,consequently leading to an increased dynamic aperture(DA),momentum acceptance(MA),and reduced sensitivity to magnetic field errors. 展开更多
关键词 Shanghai Synchrotron Radiation Facility Upgrade OCTUPOLE amplitude-dependent tune shift dynamic aperture momentum aperture
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High temperature shock synthesis of Ni-N-C single-atom catalysts for efficient CO_(2) electroreduction to CO
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作者 PANG Peiqi XU Changjian +5 位作者 LI Ruizhu GAO Na DU Xianlong LI Tao WANG Jianqiang XIAO Guoping 《燃料化学学报(中英文)》 北大核心 2025年第8期1162-1172,共11页
Electrocatalytic reduction of carbon dioxide(CO_(2))to carbon monoxide(CO)is an effective strategy to achieve carbon neutrality.High selective and low-cost catalysts for the electrocatalytic reduction of CO_(2)have re... Electrocatalytic reduction of carbon dioxide(CO_(2))to carbon monoxide(CO)is an effective strategy to achieve carbon neutrality.High selective and low-cost catalysts for the electrocatalytic reduction of CO_(2)have received increasing attention.In contrast to the conventional tube furnace method,the high-temperature shock(HTS)method enables ultra-fast thermal processing,superior atomic efficiency,and a streamlined synthesis protocol,offering a simplified method for the preparation of high-performance single-atom catalysts(SACs).The reports have shown that nickel-based SACs can be synthesized quickly and conveniently using the HTS method,making their application in CO_(2)reduction reactions(CO_(2)RR)a viable and promising avenue for further exploration.In this study,the effect of heating temperature,metal loading and different nitrogen(N)sources on the catalyst morphology,coordination environment and electrocatalytic performance were investigated.Under optimal conditions,0.05Ni-DCD-C-1050 showed excellent performance in reducing CO_(2)to CO,with CO selectivity close to 100%(−0.7 to−1.0 V vs RHE)and current density as high as 130 mA/cm^(2)(−1.1 V vs RHE)in a flow cell under alkaline environment. 展开更多
关键词 CO_(2)electrocatalytic reduction high temperature shock method single atom catalysts coordination
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Synthesis of energetic materials by microfluidics
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作者 Shuo Liu Chuanyu Zhang +1 位作者 Yanlan Wang Xueyong Wei 《Defence Technology(防务技术)》 2025年第2期306-319,共14页
Energetic materials,characterized by their capacity to store and release substantial energy,hold pivotal significance in some fields,particularly in defense applications.Microfluidics,with its ability to manipulate fl... Energetic materials,characterized by their capacity to store and release substantial energy,hold pivotal significance in some fields,particularly in defense applications.Microfluidics,with its ability to manipulate fluids and facilitate droplet formation at the microscale,enables precise control of chemical reactions.Recent scholarly endeavors have increasingly harnessed microfluidic reactors in the realm of energetic materials,yielding morphologically controllable particles with enhanced uniformity and explosive efficacy.However,crucial insights into microfluidic-based methodologies are dispersed across various publications,necessitating a systematic compilation.Accordingly,this review addresses this gap by concentrating on the synthesis of energetic materials through microfluidics.Specifically,the methods based on micro-mixing and droplets in the previous papers are summarized and the strategies to control the critical parameters within chemical reactions are discussed in detail.Then,the comparison in terms of advantages and disadvantages is attempted.As demonstrated in the last section regarding perspectives,challenges such as clogging,dead zones,and suboptimal production yields are non-ignoble in the promising fields and they might be addressed by integrating sound,optics,or electrical energy to meet heightened requirements.This comprehensive overview aims to consolidate and analyze the diverse array of microfluidic approaches in energetic material synthesis,offering valuable insights for future research directions. 展开更多
关键词 Microfluidic technology Energetic materials synthesis MICRO-MIXING Micro-droplets
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Fabrication of energetic semiconductor Bridge with high efficiency,accuracy and low cost by 3D direct writing
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作者 Yongqi Da Jiangtao Zhang +4 位作者 Fuwei Li Yuxuan Zhou Jianbing Xu Yinghua Ye Ruiqi Shen 《Defence Technology(防务技术)》 2025年第8期69-82,共14页
Enhancing the output capacity of semiconductor bridge(SCB) through the application of composite nano-energetic films is a subject of wide concern. Furthermore, improving the safety, reliability, and production efficie... Enhancing the output capacity of semiconductor bridge(SCB) through the application of composite nano-energetic films is a subject of wide concern. Furthermore, improving the safety, reliability, and production efficiency of energetic semiconductor bridge(ESCB) is the primary focus for large-scale engineering applications in the future. Here, the Al/CuO nano-film ESCB was efficiently fabricated using 3D direct writing. The electrostatic safety of the film is enhanced by precisely adjusting the particle size of Al, while ensuring that the SCB can initiate the film with small energy. The burst characteristics of SCB/ESCB were thoroughly investigated by employing a 100 μF tantalum capacitor to induce SCB and ESCB under an intense voltage gradient. The solid-state heating process of both SCB and ESCB was analyzed with multi physical simulation(MPS). The experimental results demonstrate that the critical burst time of both SCB and ESCB decreases with increasing voltage. Under the same voltage, the critical burst time of ESCB is longer than that of SCB, primarily due to differences in the melting to vaporization stage. The MPS results indicate that the highest temperature is observed at the V-shaped corner of SCB. Due to the thermal contact resistance between SCB and the film, heat conduction becomes more concentrated in the central region of the bridge, resulting in a faster solid-state heating process for ESCB compared to SCB.The results of the gap ignition experiments indicate that at a 19 mm gap, an ESCB with a film mass of 10 mg can ignite nickel hydrazine nitrate(NHN) and cyclotrimethylenetrinitramine(RDX). This suggests that thermite ESCB can serve as a novel, safe, and reliable energy exchange element and initiator in largescale engineering applications. 展开更多
关键词 Semiconductor bridge Al/CuO film Multi physical simulation(MPS) Electrostatic safety Gap ignition
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Probing Solar Polar Regions
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作者 DENG Yuanyong TIAN Hui +45 位作者 JIANG Jie YANG Shuhong LI Hao CAMERON Robert GIZON Laurent HARRA Louise WIMMER-SCHWEINGRUBER Robert F AUCHÈRE Frédéric BAI Xianyong BELLOT RUBIO Luis CHEN Linjie CHEN Pengfei CHITTA Lakshmi Pradeep DAVIES Jackie FAVATA Fabio FENG Li FENG Xueshang GAN Weiqun HASSLER Don HE Jiansen HOU Junfeng HOU Zhenyong JIN Chunlan LI Wenya LIN Jiaben NANDY Dibyendu PANT Vaibhav ROMOLI Marco SAKAO Taro KRISHNA PRASAD Sayamanthula SHEN Fang SU Yang TORIUMI Shin TRIPATHI Durgesh WANG Linghua WANG Jingjing XIA Lidong XIONG Ming YAN Yihua YANG Liping YANG Shangbin ZHANG Mei ZHOU Guiping ZHU Xiaoshuai WANG Jingxiu WANG Chi 《空间科学学报》 北大核心 2025年第4期913-942,共30页
The magnetic fields and dynamical processes in the solar polar regions play a crucial role in the solar magnetic cycle and in supplying mass and energy to the fast solar wind,ultimately being vital in controlling sola... The magnetic fields and dynamical processes in the solar polar regions play a crucial role in the solar magnetic cycle and in supplying mass and energy to the fast solar wind,ultimately being vital in controlling solar activities and driving space weather.Despite numerous efforts to explore these regions,to date no imaging observations of the Sun's poles have been achieved from vantage points out of the ecliptic plane,leaving their behavior and evolution poorly understood.This observation gap has left three top-level scientific questions unanswered:How does the solar dynamo work and drive the solar magnetic cycle?What drives the fast solar wind?How do space weather processes globally originate from the Sun and propagate throughout the solar system?The Solar Polarorbit Observatory(SPO)mission,a solar polar exploration spacecraft,is proposed to address these three unanswered scientific questions by imaging the Sun's poles from high heliolatitudes.In order to achieve its scientific goals,SPO will carry six remote-sensing and four in-situ instruments to measure the vector magnetic fields and Doppler velocity fields in the photosphere,to observe the Sun in the extreme ultraviolet,X-ray,and radio wavelengths,to image the corona and the heliosphere up to 45 R_(s),and to perform in-situ detection of magnetic fields,and low-and high-energy particles in the solar wind.The SPO mission is capable of providing critical vector magnetic fields and Doppler velocities of the polar regions to advance our understanding of the origin of the solar magnetic cycle,providing unprecedented imaging observations of the solar poles alongside in-situ measurements of charged particles and magnetic fields from high heliolatitudes to unveil the mass and energy supply that drive the fast solar wind,and providing observational constraints for improving our ability to model and predict the three-dimensional(3D)structures and propagation of space weather events. 展开更多
关键词 SUN Space exploration Solar magnetic cycle Solar wind Space weather
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Preliminary discussion on the ignition mechanism of exploding foil initiators igniting boron potassium nitrate 被引量:3
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作者 Haotian Jian Guoqiang Zheng +4 位作者 Lejian Chen Zheng Ning Guofu Yin Peng Zhu Ruiqi Shen 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第2期222-231,共10页
Exploding foil initiator(EFI)is a kind of advanced device for initiating explosives,but its function is unstable when it comes to directly igniting pyrotechnics.To solve the problem,this research aims to reveal the ig... Exploding foil initiator(EFI)is a kind of advanced device for initiating explosives,but its function is unstable when it comes to directly igniting pyrotechnics.To solve the problem,this research aims to reveal the ignition mechanism of EFIs directly igniting pyrotechnics.An oscilloscope,a photon Doppler velocimetry,and a plasma spectrum measurement system were employed to obtain information of electric characteristics,impact pressure,and plasma temperature.The results of the electric characteristics and the impact pressure were inconsistent with ignition results.The only thing that the ignition success tests had in common was that their plasma all had a relatively long period of high-temperature duration(HTD).It eventually concludes that the ignition mechanism in this research is the microconvection heat transfer rather than the shock initiation,which differs from that of exploding foil initiators detonating explosives.Furthermore,the methods for evaluating the ignition success of semiconductor bridge initiators are not entirely applicable to the tests mentioned in this paper.The HTD is the critical parameter for judging the ignition success,and it is influenced by two factors:the late time discharge and the energy of the electric explosion.The longer time of the late time discharge and the more energy of the electric explosion,the easier it is to expand the HTD,which improves the probability of the ignition success. 展开更多
关键词 Exploding foil initiator PDV Plasma spectrum Ignition mechanism Boron potassium nitrate
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Investigation on the exploding foil initiators ignition enhanced by explosion-electricity coupling 被引量:1
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作者 Songmao Zhao Haotian Jian +3 位作者 Ke Wang Zheng Ning Peng Zhu Ruiqi Shen 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第12期1-11,共11页
Explosion-electricity coupling(EEC) is a technical method to induce electric energy into the plasma material produced by explosion to improve the output of explosion.Exploding foil initiator(EFI) which could produce p... Explosion-electricity coupling(EEC) is a technical method to induce electric energy into the plasma material produced by explosion to improve the output of explosion.Exploding foil initiator(EFI) which could produce plasma during electric explosion can serve as a good carrier for studying the EEC.To investigate the enhancement ability and mechanism of EEC in EFI ignition performance,a kind of EFI chips which could realize the EEC effect was designed and fabricated to observe the characteristics of current and voltage,flyer and plasma temperature during Boron Potassium Nitrate(BPN) ignition of the EFI.It was found that the EEC could enhance EFI ignition in terms of energy utilization,ignition contact surface,and high-temperature sustainability of plasma:firstly,the EEC prolonged the late time discharge(LTD) phase of the electric explosion,making the energy of capacitor effectively utilized;secondly,the EEC could create a larger area of ignition contact surface;last of all,the EEC effect enhanced its hightemperature sustainability by sustaining continuous energy input to plasma.It also was found that the ignition voltage of BPN could be reduced by nearly 600 V under the condition of 0.4 μF capacitance.The research has successfully combined EEC with EFI,revealing the behavioral characteristics of EEC and demonstrating its effective enhancement of EFI ignition.It introduces a new approach to improving EFI output,which is conducive to low-energy ignition of EFI,and expected to take the ignition technology of EFI to a new level. 展开更多
关键词 Exploding foil initiator Explosion-electricity coupling PLASMA Ignition mechanism Boron potassium nitrate
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Optical Properties of GaAs/AlGaAs Nanowires Grown on Pre-etched Si Substrates
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作者 ZHANG Zhihong MENG Bingheng +2 位作者 WANG Shuangpeng KANG Yubin WEI Zhipeng 《发光学报》 EI CAS CSCD 北大核心 2024年第10期1639-1646,共8页
GaAs-based nanomaterials are essential for near-infrared nano-photoelectronic devices due to their exceptional optoelectronic properties.However,as the dimensions of GaAs materials decrease,the development of GaAs nan... GaAs-based nanomaterials are essential for near-infrared nano-photoelectronic devices due to their exceptional optoelectronic properties.However,as the dimensions of GaAs materials decrease,the development of GaAs nanowires(NWs)is hindered by type-Ⅱquantum well structures arising from the mixture of zinc blende(ZB)and wurtzite(WZ)phases and surface defects due to the large surface-to-volume ratio.Achieving GaAs-based NWs with high emission efficiency has become a key research focus.In this study,pre-etched silicon substrates were combined with GaAs/AlGaAs core-shell heterostructure to achieve GaAs-based NWs with good perpendicularity,excellent crystal structures,and high emission efficiency by leveraging the shadowing effect and surface passivation.The primary evidence for this includes the prominent free-exciton emission in the variable-temperature spectra and the low thermal activation energy indicated by the variable-power spectra.The findings of this study suggest that the growth method described herein can be employed to enhance the crystal structure and optical properties of otherⅢ-Ⅴlow-dimensional materials,potentially paving the way for future NW devices. 展开更多
关键词 GaAs nanowires GaAs/AlGaAs core-shell structure crystal phase optical property
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Spontaneous ignition of corrugated cardboard under dynamic high radiant flux
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作者 Liu Liu Yan Gu +10 位作者 Hong Yang Xing Wang Yang Zhou Xiaogan Dai Yong Han Shanggang Wen Ming Li Congmei Lin Changgen Feng Fei Tang Yushi Wen 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第10期65-77,共13页
Understanding the response of solid combustibles under high radiant fluxes is critical in predicting the thermal damage from extreme scenarios.Unlike the more moderate radiant fluxes in conventional hydrocarbon fires,... Understanding the response of solid combustibles under high radiant fluxes is critical in predicting the thermal damage from extreme scenarios.Unlike the more moderate radiant fluxes in conventional hydrocarbon fires,extreme events such as strong explosion,concentrated sunlight and directed energy can generate dynamic radiant fluxes at the MW/m^(2) level,creating a unique threat to materials.This study investigates the pyrolysis and spontaneous ignition behaviors of corrugated cardboard by using both experimental and numerical methods,under 10-cm dynamic high radiant fluxes ranging from 0.2 to 1.25 MW/m^(2) for 10 s.The spontaneous ignition process at dynamic high radiant fluxes was recorded and quantified.Two ignition modes were found at the critical radiant flux of 0.4 MW/m^(2),namely hot-gas spontaneous ignition and hot-residue piloted ignition.The latter is not the focus of this paper due to its extremely small probability of occurrence.The research reveals that the increase in flux intensity induces shorter delay times for both pyrolysis and ignition,lower ignition energy density,along with a corresponding rise in the critical mass flux and surface temperature at ignition moment.The simulation results are generally aligned with the experimental findings,despite some divergences may be attributed to model simplifications and parameter assumptions.The work contributes to a deeper insight into material behavior under extreme radiation,with valuable implications for fire safety and hazard assessment. 展开更多
关键词 Extreme radiation Fire safety Corrugated cardboard PYROLYSIS Ignition temperature
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A Novel High Temperature Apparatus for in situ Synchrotron X-ray Diffraction Studies of Molten Salt
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作者 CAO Hui-li GAO Mei +5 位作者 Andebet G.Tamirat ZHAO Hong-bin ZHOU Xing-tai HUANG Yu-ying LEI Qi WEN Wen 《分析测试学报》 CAS CSCD 北大核心 2024年第10期1608-1617,共10页
This study demonstrates the design and application of a novel high temperature rotatory apparatus for insitu synchrotron X-ray diffraction studies of molten salts,facilitating investigation into the interaction betwee... This study demonstrates the design and application of a novel high temperature rotatory apparatus for insitu synchrotron X-ray diffraction studies of molten salts,facilitating investigation into the interaction between various structural materials and molten salts.The apparatus enables accurate detection of every phase change during hightemperature experiments,including strong reaction processes like corrosion.Molten salts,such as chlorides or fluo⁃rides,together with the structure materials,are inserted into either quartz or boron nitride capillaries,where X-ray diffraction pattern can be continuously collected,as the samples are heated to high temperature.The replacement re⁃action,when molten ZnCl2 are etching Ti3AlC2,can be clearly observed through changes in diffraction peak intensity as well as expansion in c-axis lattice parameter of the hexagonal matrix,due to the larger atomic number and ionic ra⁃dius of Zn2+.Furthermore,we investigated the high-temperature corrosion process when GH3535 alloy is in FLiNaK molten salt,and can help to optimize its stability for potential applications in molten salt reactor.Additionally,this high temperature apparatus is fully compatible with the combined usage of X-ray diffraction and Raman technique,providing both bulk and surface structural information.This high temperature apparatus has been open to users and is extensively used at BL14B1 beamline of the Shanghai Synchrotron Radiation Facility. 展开更多
关键词 in-situ X-ray diffraction rotary micro-diffractometer rotary high-temperature apparatus molten salt
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青藏高原东缘中生代若尔盖古高原的发现及其地质意义 被引量:15
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作者 刘树根 李智武 +11 位作者 Peter J.J.Kamp 冉波 李金玺 邓宾 王国芝 Ganqing XU Martin Daniík 杨迪 王自剑 李祥辉 刘顺 李巨初 《成都理工大学学报(自然科学版)》 CAS CSCD 北大核心 2019年第1期1-28,共28页
40 Ma B.P."原青藏高原"的提出使得青藏高原的早期隆升历史受到越来越多的关注,但其向东的延伸情况不明。青藏高原东缘若尔盖高原、龙门山冲断带和四川盆地有机地构建了一个完整的原-山-盆体系,成为揭示青藏高原隆升和生长的... 40 Ma B.P."原青藏高原"的提出使得青藏高原的早期隆升历史受到越来越多的关注,但其向东的延伸情况不明。青藏高原东缘若尔盖高原、龙门山冲断带和四川盆地有机地构建了一个完整的原-山-盆体系,成为揭示青藏高原隆升和生长的理想场所,而位于高原内部若尔盖地块的红参1井更为此提供了宝贵素材。基于红参1井的构造恢复和低温热年代学研究结果,结合区域上已有的低温热年代学和古高程数据,提出青藏高原东缘在早新生代印-亚大陆碰撞之前就已形成了高原,称之为若尔盖古高原,并从基底构造属性、构造变形、地壳缩短与增厚、沉积记录等方面对其进行了论证。红参1井钻井剖面构造恢复结果揭示所钻遇7 000余米的三叠系复理石层系实际上有46%的厚度是由构造重复所致,连同广泛发育的晚三叠世埃达克质花岗岩以及利用中性岩浆岩Sr/Y比值估算的地壳厚度,共同表明青藏高原东部松潘-甘孜地区在晚三叠世就已发生了实质性的地壳加厚。红参1井多重低温热年代学[锆石(U-Th)/He,磷灰石裂变径迹和(U-Th)/He]测试结果揭示若尔盖地块分别在白垩纪中期(约120 Ma B.P.和约80 Ma B.P.)经历了2次快速的冷却事件,累计剥蚀厚度达5 km,之后转入极其缓慢的冷却过程,暗示其已进入高原化阶段;而在整个新生代期间处于近乎"零"剥蚀的状态而被动地抬升到现今高度(不同于常见的山脉隆升,地块隆升代表了一定范围的区域整体抬升)。因此,青藏高原东部若尔盖地块最晚在白垩纪末期就已形成高原,即若尔盖古高原,其范围可能包括三叠系复理石层系覆盖的大部分松潘-甘孜地区,并可能向西与羌塘古高原相连,构成羌塘-若尔盖古高原。若尔盖古高原的形成不仅造成四川盆地西缘在白垩纪中期出现了重要的物源转变,更重要的是加剧了青藏高原东缘白垩纪气候干旱化,出现了大量沙漠沉积和膏盐沉积。若尔盖古高原的发现不仅有助于深化对青藏高原隆升和生长过程的理解,也将引发对青藏高原形成机制的重新思考以及对其气候-环境-资源效应的关注。 展开更多
关键词 构造变形 隆升剥蚀 沉积记录 地壳加厚 中生代 古高原 若尔盖地块 青藏高原
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(U-Th)/He技术约束下库车盆地北缘构造热演化——以吐孜2井为例 被引量:15
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作者 喻顺 陈文 +5 位作者 吕修祥 Noreen Evans Brent McInnes 尹继元 孙敬博 李洁 《地球物理学报》 SCIE EI CAS CSCD 北大核心 2014年第1期62-74,共13页
库车前陆盆地蕴藏着丰富的油气资源,然而盆地中新生代的构造热演化史一直缺乏有效的研究,制约了油气的勘探.本文测试了吐孜2井磷灰石、锆石(U-Th)/He年龄数据,建立了He年龄随现今温度/深度变化的关系,确定该区磷灰石(U-Th)/He体系封闭... 库车前陆盆地蕴藏着丰富的油气资源,然而盆地中新生代的构造热演化史一直缺乏有效的研究,制约了油气的勘探.本文测试了吐孜2井磷灰石、锆石(U-Th)/He年龄数据,建立了He年龄随现今温度/深度变化的关系,确定该区磷灰石(U-Th)/He体系封闭温度为89℃.综合利用(U-Th)/He及镜质体反射率(Ro)数据模拟恢复了库车盆地吐孜2井中新生代热演化史,结果表明库车盆地吐孜洛克背斜形成起始时间约为5Ma,新生代抬升剥蚀量平均约为670m,平均抬升剥蚀速率为0.133mm/a.根据新生代吐孜洛克背斜的构造演化分析确定了气源断裂活动及圈闭形成的时期,揭示了吐孜洛克背斜天然气成藏时间为5Ma以后,且烃源岩生排烃、断裂活动及圈闭形成的时间具有良好的匹配关系,这是吐孜洛克油气田形成的关键因素之一.本文应用(U-Th)/He技术研究沉积盆地构造热演化史,对库车盆地油气勘探具有重要的意义. 展开更多
关键词 He封闭温度 构造热演化 隆升剥蚀 库车盆地
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利用HHT方法对非平稳风力的时频分析 被引量:7
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作者 赵杨 武岳 +3 位作者 曹曙阳 段忠东 Yukio Tamura S. Ozono 《振动与冲击》 EI CSCD 北大核心 2011年第2期5-9,14,共6页
非平稳信号的分析方法是信号分析领域中的一个重要问题。以风洞试验获得的非平稳风压信号和升力系数信号为研究对象,采用HHT方法对信号进行时频分析。HHT(Hilbert-Huang transform)方法可以获得有意义的瞬时频率,从而给出频率随时间变... 非平稳信号的分析方法是信号分析领域中的一个重要问题。以风洞试验获得的非平稳风压信号和升力系数信号为研究对象,采用HHT方法对信号进行时频分析。HHT(Hilbert-Huang transform)方法可以获得有意义的瞬时频率,从而给出频率随时间变化的精确表达;信号最终被表示为时频平面上的能量分布,成为Hilbert谱;该方法适用于分析生活中普遍存在的大量频率随时间变化的非线性、非平稳信号,可将复杂的信号直接分离成从高频到低频的若干阶固有模态函数。分析结果虽然没有表现出明显的频谱分布特性,但与以往HHT分析结果提取的固有模态函数不同,如果对该试验获得的非平稳信号提取的固有模态是低频部分的残余信号,忽略其他高频信号,则风压时程和升力系数时程的残余信号曲线就可以分别回归为一个线性函数和一个正弦函数。这也说明,该非平稳信号的主成分仍然是由平稳信号组成的,可以用分析平稳信号的方法进行时程分析。 展开更多
关键词 非平稳信号 希尔伯特-黄 经验模态分解法 固有模态函数 时程分析
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193nm激光引发PET表面的化学接枝 被引量:3
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作者 吴刚 王迎军 +3 位作者 陈晓峰 叶建东 魏坤 LEON Betty 《高等学校化学学报》 SCIE EI CAS CSCD 北大核心 2008年第8期1655-1659,共5页
将聚对苯二甲酸乙二醇酯[Poly(ethylene terephthalate),PET]材料置于氨气气氛中,利用激光光子同时激发材料表面及氨气形成自由基,用激光引发反应并促进氨基在材料表面的接枝.改性后的测试结果表明,材料表面粗糙度没有显著变化,但水接... 将聚对苯二甲酸乙二醇酯[Poly(ethylene terephthalate),PET]材料置于氨气气氛中,利用激光光子同时激发材料表面及氨气形成自由基,用激光引发反应并促进氨基在材料表面的接枝.改性后的测试结果表明,材料表面粗糙度没有显著变化,但水接触角的减小表明表面化学结构发生了某种变化.傅里叶变换红外光谱(FTIR/ATR)图谱在3352和1613cm-1处出现了新的氨基吸收峰,证实了表面接枝了氨基.同时X射线光电子能谱(XPS)也证明了材料表面C—N键的存在,其C1s结合能为285.5 eV,N1s为398.9 eV.飞行时间二次离子质谱(Tof-SIMS)也检测到含氨基的分子碎片,其碎片成像图显示接枝仅发生在激光辐照部位.实验结果表明,激光能在生物材料表面进行局部区域的选择性接枝. 展开更多
关键词 193 nm激光 表面接枝 聚对苯二甲酸乙二醇酯 氨基
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NiTi形状记忆合金表面TiO_2薄膜的制备及其血液相容性 被引量:14
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作者 耿芳 石萍 F.T.Cheng 《中国有色金属学报》 EI CAS CSCD 北大核心 2004年第9期1575-1579,共5页
采用溶胶 凝胶法在NiTi合金表面制备了TiO2薄膜,用DSC分析了凝胶在加热过程中发生的转变。结果表明:在NiTi表面形成金红石型TiO2薄膜;覆盖有TiO2薄膜的NiTi合金与NiTi基体及316L不锈钢、Ti6Al4V相比,凝血时间延长,溶血率下降,说明TiO2... 采用溶胶 凝胶法在NiTi合金表面制备了TiO2薄膜,用DSC分析了凝胶在加热过程中发生的转变。结果表明:在NiTi表面形成金红石型TiO2薄膜;覆盖有TiO2薄膜的NiTi合金与NiTi基体及316L不锈钢、Ti6Al4V相比,凝血时间延长,溶血率下降,说明TiO2膜可提高NiTi合金血液相容性。 展开更多
关键词 NITI 溶血 凝血 TiO2
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突出电极对四杆型RFQ腔体并联阻抗及场平整性的影响 被引量:1
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作者 张周礼 赵红卫 +2 位作者 R.A.Jameson 许哲 张生虎 《强激光与粒子束》 EI CAS CSCD 北大核心 2010年第2期430-432,共3页
中国科学院近代物理研究所正在进行等离子体直接注入方案的研究,以便为重离子物理研究提供稳定可靠的高流强束流。由于工作频率较低,用于等离子体直接注入方案的RFQ腔体采用了适合于低频的四杆型结构。在完成束流动力学设计的前提下,研... 中国科学院近代物理研究所正在进行等离子体直接注入方案的研究,以便为重离子物理研究提供稳定可靠的高流强束流。由于工作频率较低,用于等离子体直接注入方案的RFQ腔体采用了适合于低频的四杆型结构。在完成束流动力学设计的前提下,研究了RFQ腔体支撑臂的各参数对并联阻抗的影响。由于突出电极之间存在着一定大小的电容,会对腔体的性能产生影响,为使腔体达到最优化的设计,进行了突出电极对并联阻抗及场平整性的影响的研究,并给出了突出电极的取值范围。 展开更多
关键词 重离子加速器 MAFIA 突出电极 并联阻抗 场平整性
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氩气等离子体射流诱导水生成OH自由基的研究
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作者 刘坤 廖华 +3 位作者 郑培超 王琛颖 刘红弟 Dobrynin Danil 《光谱学与光谱分析》 SCIE EI CAS CSCD 北大核心 2015年第7期1791-1796,共6页
·OH在众多领域中具有非常重要的作用,在国际上引起了广泛关注,而大气压等离子体射流由于不需要真空、装置简单易于携带,且具有高浓度活性粒子、高电子温度、低射流温度等优点,具有极强的应用前景,成为气体放电领域的重要研究课题... ·OH在众多领域中具有非常重要的作用,在国际上引起了广泛关注,而大气压等离子体射流由于不需要真空、装置简单易于携带,且具有高浓度活性粒子、高电子温度、低射流温度等优点,具有极强的应用前景,成为气体放电领域的重要研究课题。特别是如何诱导等离子体射流中·OH的产生已成为等离子体射流领域一个新的研究热点。国外率先报道了将水蒸汽以一定的比例混入等离子体射流工作气体中以诱导产生大量·OH的研究,然而当含水量较高时,射流会剧烈摆动,放电变得十分不均匀、不稳定。为此,本文设计了一种大气压双环电极氩气等离子体射流诱导水产生·OH的装置,通过引入超声雾化装置增加等离子体羽周围的湿度以提高·OH含量,重点研究了不同电压、流量下诱导水生成OH(A2Σ+)的生成规律;利用发射光谱法测试了装置产生·OH的含量;并利用810.41和811.48nm这两条Ar原子光谱线,计算了等离子体羽中的电子温度。结果表明等离子体羽可以诱导周围的水产生·OH,且随电压从20kV增大到28kV时,OH(A2Σ+)的产量逐渐增大;而当氩气流量从100L·h-1增大到200L·h-1时,·OH产量随着流量的增大而增大,但是当氩气流量从200L·h-1增大到600L·h-1时,·OH产量随着流量的增大而不断减小。OH(A2Σ+)的产量和电子温度变化趋势完全一致,证明了·OH的产量主要受电子温度的影响。 展开更多
关键词 大气压离子体射流 超声雾化 湿度 OH(A2Σ+)产量 电子温度
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电子能量损失谱及其在纳米多层膜研究中的应用
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作者 肖晓玲 代明江 +5 位作者 周克崧 刘敏 D.G.McCulloch P.C.T.Ha D.R.Mckenzie M.M.M.Bilek 《真空科学与技术学报》 EI CAS CSCD 北大核心 2007年第6期540-544,共5页
本文介绍了电子能量损失谱的基本原理、能量过滤成像分析及应用电子能量损失谱计算碳同素异构体的电子密度和sp2键结构的含量。同时应用透射电镜(TEM)和电镜配置的能量过滤成像系统(gatan imaging filter),结合电子能量损失谱研究类金刚... 本文介绍了电子能量损失谱的基本原理、能量过滤成像分析及应用电子能量损失谱计算碳同素异构体的电子密度和sp2键结构的含量。同时应用透射电镜(TEM)和电镜配置的能量过滤成像系统(gatan imaging filter),结合电子能量损失谱研究类金刚石(a-C/Ta-C)和Al/AlN两种纳米多层膜的形态、结构和膜中各元素的分布。结果显示透射电镜观察配合电子能量损失谱在纳米多层膜表征中将会扮演一个重要角色。 展开更多
关键词 电子能量损失谱 透射电镜 纳米多层膜 a-C/Ta-C Al/AlN
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ρ^(0)→π^(+)π^(-)衰变的么正计算和ρ^(0)极化插入的虚部
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作者 刘良钢 黎培进 +1 位作者 段宜武 阮文英 《中山大学学报(自然科学版)》 CAS CSCD 1994年第3期25-29,共5页
本文给出了ρ~0→π~+π~-衰变的么正计算及其衰变率和ρ~2极化插入的关系.ρ~0极化插入的虚部是用维度积分的方法来计算.极化插入虚部的计算方法是普适的.
关键词 ρ^(0)→π^(+)π^(-)衰变 光学定理 极化插入虚部
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