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Brain-computer interfaces re-shape functional neurosurgery
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作者 Thomas Kinfe Steffen Brenner Nima Etminan 《Neural Regeneration Research》 2026年第3期1122-1123,共2页
Invasive as well as non-invasive neurotechnologies conceptualized to interface the central and peripheral nervous system have been probed for the past decades,which refer to electroencephalography,electrocorticography... Invasive as well as non-invasive neurotechnologies conceptualized to interface the central and peripheral nervous system have been probed for the past decades,which refer to electroencephalography,electrocorticography and microelectrode arrays.The challenges of these mentioned approaches are characterized by the bandwidth of the spatiotemporal resolution,which in turn is essential for large-area neuron recordings(Abiri et al.,2019). 展开更多
关键词 microelectrode arraysthe brain computer interfaces ELECTROENCEPHALOGRAPHY ELECTROCORTICOGRAPHY interface central peripheral nervous system non invasive neurotechnologies functional neurosurgery microelectrode arrays
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Recent advances and perspectives in interface engineering of high-performance alloys
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作者 Yuan Zhu Tongbo Jiang +7 位作者 Honghui Wu Faguo Hou Xiaoye Zhou Feiyang Wang Shuize Wang Junheng Gao Haitao Zhao Chaolei Zhang 《International Journal of Minerals,Metallurgy and Materials》 2026年第1期53-67,共15页
High-performance alloys are indispensable in modern engineering because of their exceptional strength,ductility,corrosion resistance,fatigue resistance,and thermal stability,which are all significantly influenced by t... High-performance alloys are indispensable in modern engineering because of their exceptional strength,ductility,corrosion resistance,fatigue resistance,and thermal stability,which are all significantly influenced by the alloy interface structures.Despite substantial efforts,a comprehensive overview of interface engineering of high-performance alloys has not been presented so far.In this study,the interfaces in high-performance alloys,particularly grain and phase boundaries,were systematically examined,with emphasis on their crystallographic characteristics and chemical element segregations.The effects of the interfaces on the electrical conductivity,mechanical strength,toughness,hydrogen embrittlement resistance,and thermal stability of the alloys were elucidated.Moreover,correlations among various types of interfaces and advanced experimental and computational techniques were examined using big data analytics,enabling robust design strategies.Challenges currently faced in the field of interface engineering and emerging opportunities in the field are also discussed.The study results would guide the development of next-generation high-performance alloys. 展开更多
关键词 interface engineering crystallographic boundary chemical boundary alloy design
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Influence of interface shape on microstructure and mechanical properties of Mg/Al composite plates fabricated by hot-pressing
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作者 Shi-jun TAN Bo SONG +6 位作者 Hao-hua XU Ting-ting LIU Jia SHE Sheng-feng GUO Xian-hua CHEN Kai-hong ZHENG Fu-sheng PAN 《Transactions of Nonferrous Metals Society of China》 2026年第1期124-143,共20页
A new method was proposed for preparing AZ31/1060 composite plates with a corrugated interface,which involved cold-pressing a corrugated surface on the Al plate and then hot-pressing the assembled Mg/Al plate.The resu... A new method was proposed for preparing AZ31/1060 composite plates with a corrugated interface,which involved cold-pressing a corrugated surface on the Al plate and then hot-pressing the assembled Mg/Al plate.The results show that cold-pressing produces intense plastic deformation near the corrugated surface of the Al plate,which promotes dynamic recrystallization of the Al substrate near the interface during the subsequent hot-pressing.In addition,the initial corrugation on the surface of the Al plate also changes the local stress state near the interface during hot pressing,which has a large effect on the texture components of the substrates near the corrugated interface.The construction of the corrugated interface can greatly enhance the shear strength by 2−4 times due to the increased contact area and the strong“mechanical gearing”effect.Moreover,the mechanical properties are largely depended on the orientation relationship between corrugated direction and loading direction. 展开更多
关键词 Mg/Al composite plate interface shape MICROSTRUCTURE mechanical properties TEXTURE
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Lithium-Ion Dynamic Interface Engineering of Nano-Charged Composite Polymer Electrolytes for Solid-State Lithium-Metal Batteries
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作者 Shanshan Lv Jingwen Wang +7 位作者 Yuanming Zhai Yu Chen Jiarui Yang Zhiwei Zhu Rui Peng Xuewei Fu Wei Yang Yu Wang 《Nano-Micro Letters》 2026年第2期288-305,共18页
Composite polymer electrolytes(CPEs)offer a promising solution for all-solid-state lithium-metal batteries(ASSLMBs).However,conventional nanofillers with Lewis-acid-base surfaces make limited contribution to improving... Composite polymer electrolytes(CPEs)offer a promising solution for all-solid-state lithium-metal batteries(ASSLMBs).However,conventional nanofillers with Lewis-acid-base surfaces make limited contribution to improving the overall performance of CPEs due to their difficulty in achieving robust electrochemical and mechanical interfaces simultaneously.Here,by regulating the surface charge characteristics of halloysite nanotube(HNT),we propose a concept of lithium-ion dynamic interface(Li^(+)-DI)engineering in nano-charged CPE(NCCPE).Results show that the surface charge characteristics of HNTs fundamentally change the Li^(+)-DI,and thereof the mechanical and ion-conduction behaviors of the NCCPEs.Particularly,the HNTs with positively charged surface(HNTs+)lead to a higher Li^(+)transference number(0.86)than that of HNTs-(0.73),but a lower toughness(102.13 MJ m^(-3)for HNTs+and 159.69 MJ m^(-3)for HNTs-).Meanwhile,a strong interface compatibilization effect by Li^(+)is observed for especially the HNTs+-involved Li^(+)-DI,which improves the toughness by 2000%compared with the control.Moreover,HNTs+are more effective to weaken the Li^(+)-solvation strength and facilitate the formation of Li F-rich solid-electrolyte interphase of Li metal compared to HNTs-.The resultant Li|NCCPE|LiFePO4cell delivers a capacity of 144.9 m Ah g^(-1)after 400 cycles at 0.5 C and a capacity retention of 78.6%.This study provides deep insights into understanding the roles of surface charges of nanofillers in regulating the mechanical and electrochemical interfaces in ASSLMBs. 展开更多
关键词 Charged nanofillers Nanocomposite polymer electrolyte Dynamic lithium ion interface Solid ion-conductors Solidstate lithium-metal battery
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SWI-DWI不匹配在急性缺血性脑卒中病人静脉溶栓预后评估中的价值分析
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作者 卜静英 高铎 +2 位作者 袁涛 胡婧 李梦雅 《安徽医药》 2025年第7期1359-1364,I0011,共7页
目的 探讨磁敏感加权成像(SWI)-弥散加权成像(DWI)不匹配在急性缺血性脑卒中(AIS)病人静脉溶栓预后评估中的价值。方法 前瞻性筛选2019年5月至2020年10月在河北医科大学第二医院就诊的AIS病人109例,全部行磁共振成像(MRI),静脉溶栓治疗... 目的 探讨磁敏感加权成像(SWI)-弥散加权成像(DWI)不匹配在急性缺血性脑卒中(AIS)病人静脉溶栓预后评估中的价值。方法 前瞻性筛选2019年5月至2020年10月在河北医科大学第二医院就诊的AIS病人109例,全部行磁共振成像(MRI),静脉溶栓治疗后随访3个月,根据预后情况将病人分为良好组(n=73)和不良组(n=36)。比较两组的影像学参数及临床资料,并经logistic回归模型分析影响AIS病人静脉溶栓治疗预后不良的危险因素。结果 随访3个月,109例病人中预后不良36例、预后良好73例;预后不良组SWI-Alberta卒中项目早期计算机断层扫描评分(ASPECTS)为(5.11±1.40)分,良好组为(4.67±0.99)分,两组比较差异统计学意义(P>0.05);不良组的改良脑梗死溶栓分级(mTICI)重度狭窄占比高于良好组,SWIDWI不匹配占比则低于良好组,不良组DWI-ASPECTS评分为(4.89±1.04)分低于良好组(6.60±1.57)分(P<0.05)。不良组入院美国国立卫生院神经功能缺损(NIHSS)评分、发病至MRI检查时间及白细胞计数、低密度脂蛋白胆固醇(LDL-C)水平高于良好组(P<0.05)。多因素logistic回归模型显示,入院NIHSS评分高是导致AIS病人静脉溶栓预后不良的独立危险因素,而高DWIASPECTS评分和SWI-DWI不匹配是AIS病人预后良好的保护因素(P<0.05)。结论 SWI-DWI序列不匹配对AIS病人静脉溶栓预后具有一定的诊断价值,可作为AIS病人预后评估的一种简单易行的影像学方法。 展开更多
关键词 卒中 磁共振成像 磁敏感加权成像-弥散加权成像(swi-DWI) 组织型纤溶酶原激活剂 预后
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Numerical study on shock-accelerated heavy gas cylinderswith diffusive interfaces 被引量:4
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作者 Dongdong Li Ben Guan Ge Wang 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2019年第4期750-762,共13页
Interactions of shock wave and heavy gas cylinders with different diffusive interfaces are numerically investigated. Comparisons among these interfaces are made in terms of cylinder morphology, wave system evolution, ... Interactions of shock wave and heavy gas cylinders with different diffusive interfaces are numerically investigated. Comparisons among these interfaces are made in terms of cylinder morphology, wave system evolution, fluids mixing, and circulation generation. Navier-Stokes equations are solved in the present work to simulate the complex multi-fluid flow. The fifth-order weighted essentially non-oscillatory scheme is used to compute the numerical flux. The influence of interface diffusion is revealed by the numerical results. The cylinders with similar geometric scale but different diffusion interface have great similarities in the hydrodynamic characteristics, including the interface morphology, shock focusing and molecular mixing, as well as circulation deposition. For the cases with more serious interface diffusion, the cylinder develops into more regular vortex pairs. The diffusive interface greatly mitigates the strength of the reflected shock wave and weakens the shock focusing capability. Some interface structural features are also recorded and analyzed. The diffusive interface brings about slower molecular mixing and less circulation generation. The circulation deposition on different interfaces is quantitatively investigated and compared with the theoretical models. The theoretical models are found to be applicable to the scenarios of diffusive interfaces. 展开更多
关键词 Shock BUBBLE interaction INTERFACIAL INSTABILITY Diffusive interface CIRCULATION model
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SWI/SNF复合体缺失的鼻腔鼻窦癌10例临床病理分析
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作者 盛晴宇 李玲 +4 位作者 袁梦丹 严丹 陈新玉 袁静萍 赵丽娜 《临床与实验病理学杂志》 北大核心 2025年第12期1632-1637,共6页
目的探讨SWI/SNF复合体缺失的鼻腔鼻窦癌(SWI/SNF complex-deficient sinonasal carcinoma,SCDSC)的临床病理学特征、免疫表型、诊断、鉴别诊断及预后。方法收集10例SCDSC,观察其临床特征、组织学形态、免疫表型、临床诊疗经过及预后,... 目的探讨SWI/SNF复合体缺失的鼻腔鼻窦癌(SWI/SNF complex-deficient sinonasal carcinoma,SCDSC)的临床病理学特征、免疫表型、诊断、鉴别诊断及预后。方法收集10例SCDSC,观察其临床特征、组织学形态、免疫表型、临床诊疗经过及预后,并文献复习。结果10例患者中,伴SMARCB1/INI1缺失6例,伴SMARCA4/BRG1缺失4例;男性7例,女性3例,年龄21~71岁(平均50.1岁);临床首发症状主要为鼻塞伴胀痛、鼻出血、头晕、头痛等。镜检:肿瘤细胞排列呈巢片状,中央可见坏死,部分呈基底细胞样,细胞圆形或多角形,细胞核大、泡状核,核仁明显,病理性核分裂象易见。免疫表型:伴SMARCB1缺失6例:CKpan、EMA均弥漫阳性,不同程度表达鳞状上皮标志物CK5/6、p63和p40,INI1表达缺失,其中1例同时伴SMARCA2/BRM表达缺失;伴SMARCA4缺失4例:CKpan灶状阳性或阴性,其中1例p16弥漫强阳性,灶状表达神经内分泌标志物CD56、Syn,BRG1表达缺失;所有病例S-100、SOX10、NUT、CD45、HMB45、CD99、NKX2.2、Calretinin均阴性,Ki67增殖指数30%~90%。EBER原位杂交呈阴性。10例患者均行内镜下鼻腔鼻窦及颅底病损切除术,术后辅以放、化疗,其中1例同时行PD1免疫治疗。结论SCDSC是一类少见的恶性肿瘤,病程发展快,临床分期高、预后差。SWI/SNF复合体亚单位蛋白水平的检测对该肿瘤的诊断、鉴别诊断、预后评估及治疗有重要的价值。 展开更多
关键词 鼻窦肿瘤 SMARCB1 SMARCA4 swi/SNF复合体缺失
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SWI/SNF染色质重塑复合物在肿瘤耐药中的作用 被引量:1
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作者 朱桂珍 叶巧 +7 位作者 罗渊 彭洁 王璐 杨昭婷 段峰森 郭丙乾 梅竹松 王广云 《生物化学与生物物理进展》 北大核心 2025年第1期20-31,共12页
肿瘤耐药是化疗和靶向药物治疗面临的重要问题,它是一个涉及染色质重塑的复杂过程。SWI/SNF是肿瘤发生中研究最多的ATP依赖性染色质重塑复合物之一,在染色质结构稳定性、基因表达和翻译后修饰的协调过程中起着重要作用,但其调控肿瘤耐... 肿瘤耐药是化疗和靶向药物治疗面临的重要问题,它是一个涉及染色质重塑的复杂过程。SWI/SNF是肿瘤发生中研究最多的ATP依赖性染色质重塑复合物之一,在染色质结构稳定性、基因表达和翻译后修饰的协调过程中起着重要作用,但其调控肿瘤耐药的机制尚未被系统梳理。SWI/SNF按其亚基组成可分为BAF、PBAF和ncBAF 3种,这3种亚型均包含ATP酶催化亚基、核心亚基和调节亚基,可以通过调控染色质结构来控制基因表达。SWI/SNF复合物亚基的改变是调控肿瘤耐药和进展的重要因素之一,充分了解该复合物在肿瘤耐药中的分子机制可以改善癌症的治疗。本文总结了SWI/SNF复合物的组成、引起肿瘤耐药的突变或异常表达亚基类型、主要的耐药机制以及肿瘤耐药的克服方法等,为临床上SWI/SNF亚基突变或异常表达引起的肿瘤预后不良的诊断和治疗提供了思路。 展开更多
关键词 swi/SNF染色质重塑复合物 亚基突变 肿瘤耐药
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Interface-related switching behaviors of amorphous Pr_(0.67)Sr_(0.33)MnO_3-based memory cells
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作者 张婷 白莹 +1 位作者 贾彩虹 张伟风 《Chinese Physics B》 SCIE EI CAS CSCD 2012年第10期429-434,共6页
The resistive switching properties in amorphous Pr0.67Sr0.33MnO3 films deposited by pulsed laser deposition are investigated.Reproducible and bipolar counter-8-shape and 8-shape switching behaviours of Au/Pr0.67Sr0.33... The resistive switching properties in amorphous Pr0.67Sr0.33MnO3 films deposited by pulsed laser deposition are investigated.Reproducible and bipolar counter-8-shape and 8-shape switching behaviours of Au/Pr0.67Sr0.33MnO3 /F:SnO2 junctions are obtained at room temperature.Dramatically,the coexistence of two switching polarities could be reversibly adjusted by an applied voltage range.The results allocated those two switching types to areas of different defect densities beneath the same electrode.The migration of oxygen vacancies and the trapping effect of electrons under an applied electric field play an important role.An interface-effect-related resistance switching is proposed in an amorphous Pr0.67Sr0.33MnO3-based memory cell. 展开更多
关键词 Pr0.67Sr0.33MnO3 thin films resistance switching AMORPHOUS metal-oxide interface
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Homogeneous interface-type resistance switching in Au/La_(0.67)Ca_(0.33)MnO_3/SrTiO_3/F:SnO_2 heterojunction memories
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作者 张婷 丁玲红 张伟风 《Chinese Physics B》 SCIE EI CAS CSCD 2012年第4期467-472,共6页
La0.67Ca0.33MnO3 thin films are fabricated on fluorine-doped tin oxide conducting glass substrates by a pulsed laser deposition technique with SrTiO3 used as a buffer layer. The current-voltage characteristics of the ... La0.67Ca0.33MnO3 thin films are fabricated on fluorine-doped tin oxide conducting glass substrates by a pulsed laser deposition technique with SrTiO3 used as a buffer layer. The current-voltage characteristics of the heterojunetions exhibit an asymmetric and resistance switching behaviour. A homogeneous interface-type conduction mechanism is also reported using impedance spectroscopy. The spatial homogeneity of the charge carrier distribution leads to field- induced potential-barrier change at the Au-La0.67Ca0.33MnO3 interface and a concomitant resistance switching effect. The ratio of the high resistance state to the low resistance state is found to be as high as 1.3 x 10^4% by simulating the AC electric field. This colossal resistance switching effect will greatly improve the signal-to-noise ratio in nonvolatile memory applications. 展开更多
关键词 La0.67Ca0.33MnO3 thin films resistance switching impedance spectroscopy metal-oxide interface
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Influences of Interface States on Resistive Switching Properties of TiOx with Different Electrodes
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作者 贾泽 王林凯 任天令 《Chinese Physics Letters》 SCIE CAS CSCD 2010年第11期194-197,共4页
Different TiOx thin films prepared by graded or sufficient oxidization of Ti are applied with Pt or Ag electrode in metal?insulator-metal (MIM) structures for studying the properties and mechanisms of resistive swi... Different TiOx thin films prepared by graded or sufficient oxidization of Ti are applied with Pt or Ag electrode in metal?insulator-metal (MIM) structures for studying the properties and mechanisms of resistive switching. The differences on the mobile oxygen vacancies in TiOx films and different work functions of the electrode films result in different insulator-metal interface states, which are displayed as ohmic-like or non-ohmic contact. Based on the interface states, the electrical models for MIM devices are analyzed and extracted. The electrode-limited effect and the bulk-limited effect can be unified to explain the mechanisms for resistive switching behavior as the dominant effect respectively in various conditions. All the current-voltage curves of the four kinds of specimens measured in the experiments can be explained and proved in accordance with the theory. 展开更多
关键词 Electronics and devices Semiconductors Surfaces interfaces and thin films Condensed matter: structural mechanical & thermal Chemical physics and physical chemistry
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Multiple Tin Compounds Modified Carbon Fibers to Construct Heterogeneous Interfaces for Corrosion Prevention and Electromagnetic Wave Absorption 被引量:1
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作者 Zhiqiang Guo Di Lan +6 位作者 Zirui Jia Zhenguo Gao Xuetao Shi Mukun He Hua Guo Guanglei Wu Pengfei Yin 《Nano-Micro Letters》 SCIE EI CAS 2025年第1期507-527,共21页
Currently,the demand for electromagnetic wave(EMW)absorbing materials with specific functions and capable of withstanding harsh environments is becoming increasingly urgent.Multi-component interface engineering is con... Currently,the demand for electromagnetic wave(EMW)absorbing materials with specific functions and capable of withstanding harsh environments is becoming increasingly urgent.Multi-component interface engineering is considered an effective means to achieve high-efficiency EMW absorption.However,interface modulation engineering has not been fully discussed and has great potential in the field of EMW absorption.In this study,multi-component tin compound fiber composites based on carbon fiber(CF)substrate were prepared by electrospinning,hydrothermal synthesis,and high-temperature thermal reduction.By utilizing the different properties of different substances,rich heterogeneous interfaces are constructed.This effectively promotes charge transfer and enhances interfacial polarization and conduction loss.The prepared SnS/SnS_(2)/SnO_(2)/CF composites with abundant heterogeneous interfaces have and exhibit excellent EMW absorption properties at a loading of 50 wt%in epoxy resin.The minimum reflection loss(RL)is−46.74 dB and the maximum effective absorption bandwidth is 5.28 GHz.Moreover,SnS/SnS_(2)/SnO_(2)/CF epoxy composite coatings exhibited long-term corrosion resistance on Q235 steel surfaces.Therefore,this study provides an effective strategy for the design of high-efficiency EMW absorbing materials in complex and harsh environments. 展开更多
关键词 Electrostatic spinning Component regulation Heterogeneous interfaces Electromagnetic wave absorption Corrosion protection
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Effect of Switching on Metal-Organic Interface Adhesion Relevant to Organic Electronic Devices
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作者 Babaniyi Babatope Akogwu Onobu +1 位作者 Olusegun O. Adewoye Winston O. Soboyejo 《Advances in Materials Physics and Chemistry》 2013年第7期299-306,共8页
Considerable efforts are currently being devoted to investigation of metal-organic, organic-organic and organic-inorganic interfaces relevant to organic electronic devices such as organic light emitting diode (OLEDs),... Considerable efforts are currently being devoted to investigation of metal-organic, organic-organic and organic-inorganic interfaces relevant to organic electronic devices such as organic light emitting diode (OLEDs), organic photovoltaic solar cells, organic field effect transistors (OFETs), organic spintronic devices and organic-based Write Once Read Many times (WORM) memory devices on both rigid and flexible substrates in laboratories around the world. The multilayer structure of these devices makes interfaces between dissimilar materials in contact and plays a prominent role in charge transport and injection efficiency which inevitably affect device performance. This paper presents results of an initial study on how switching between voltage thresholds and chemical surface treatment affects adhesion properties of a metal-organic (Au-PEDOT:PSS) contact interface in a WORM device. Contact and Tapping-mode Atomic Force Microscopy (AFM) gave surface topography, phase imaging and interface adhesion properties in addition to SEM/EDX imaging which showed that surface treatment, switching and surface roughness all appeared to be key factors in increasing interface adhesion with implications for increased device performance. 展开更多
关键词 AFM interface Adhesion Force ORGANIC Electronics Voltage swiTCHING ORGANIC Memory Devices Surface Treatment
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XOR spin logic operated by unipolar current based on field-free spin-orbit torque switching induced by a lateral interface
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作者 Yan-Ru Li Mei-Yin Yang +5 位作者 Guo-Qiang Yu Bao-Shan Cui Jin-Biao Liu Yong-Liang Li Qi-Ming Shao Jun Luo 《Rare Metals》 SCIE EI CAS CSCD 2024年第8期3868-3875,共8页
Spin logics have emerged as a promising avenue for the development of logic-in-memory architectures.In particular,the realization of XOR spin logic gates using a single spin-orbit torque device shows great potential f... Spin logics have emerged as a promising avenue for the development of logic-in-memory architectures.In particular,the realization of XOR spin logic gates using a single spin-orbit torque device shows great potential for low-power stateful logic circuits in the next generation.In this study,we successfully obtained the XOR logic gate by utilizing a spin-orbit torque device with a lateral interface,which was created by local ion implantation in the Ta/Pt/Co/Ta Hall device exhibiting perpendicular magnetic anisotropy.The angle of the lateral interface is set at 45°relative to the current direction,leading to the competition between symmetry breaking and current-driven Néel-type domain wall motion.Consequently,the field-free magnetic switching reversed is realized by the same sign of current amplitude at this interface.Based on this field-free magnetic switching behavior,we successfully proposed an XOR logic gate that could be implemented using only a single spin-orbit torque Hall device.This study provides a potentially viable approach toward efficient spin logics and in-memory computing architectures. 展开更多
关键词 Filed-free magnetic switching Spin-orbit torque XOR logic gate Lateral interface
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Recent applications of EEG-based brain-computer-interface in the medical field 被引量:8
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作者 Xiu-Yun Liu Wen-Long Wang +39 位作者 Miao Liu Ming-Yi Chen Tânia Pereira Desta Yakob Doda Yu-Feng Ke Shou-Yan Wang Dong Wen Xiao-Guang Tong Wei-Guang Li Yi Yang Xiao-Di Han Yu-Lin Sun Xin Song Cong-Ying Hao Zi-Hua Zhang Xin-Yang Liu Chun-Yang Li Rui Peng Xiao-Xin Song Abi Yasi Mei-Jun Pang Kuo Zhang Run-Nan He Le Wu Shu-Geng Chen Wen-Jin Chen Yan-Gong Chao Cheng-Gong Hu Heng Zhang Min Zhou Kun Wang Peng-Fei Liu Chen Chen Xin-Yi Geng Yun Qin Dong-Rui Gao En-Ming Song Long-Long Cheng Xun Chen Dong Ming 《Military Medical Research》 2025年第8期1283-1322,共40页
Brain-computer interfaces(BCIs)represent an emerging technology that facilitates direct communication between the brain and external devices.In recent years,numerous review articles have explored various aspects of BC... Brain-computer interfaces(BCIs)represent an emerging technology that facilitates direct communication between the brain and external devices.In recent years,numerous review articles have explored various aspects of BCIs,including their fundamental principles,technical advancements,and applications in specific domains.However,these reviews often focus on signal processing,hardware development,or limited applications such as motor rehabilitation or communication.This paper aims to offer a comprehensive review of recent electroencephalogram(EEG)-based BCI applications in the medical field across 8 critical areas,encompassing rehabilitation,daily communication,epilepsy,cerebral resuscitation,sleep,neurodegenerative diseases,anesthesiology,and emotion recognition.Moreover,the current challenges and future trends of BCIs were also discussed,including personal privacy and ethical concerns,network security vulnerabilities,safety issues,and biocompatibility. 展开更多
关键词 Brain-computer interfaces(BCIs) Medical applications REHABILITATION COMMUNICATION Brain monitoring DIAGNOSIS
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基于GQI_(SWI)模型的大连市地下水海水入侵水质评价
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作者 邸俊强 孙大明 +2 位作者 原晖 王主华 吕宝阔 《水电能源科学》 北大核心 2025年第2期63-66,共4页
地下水在保障城乡居民生活用水、工业和农业生产用水中发挥着极其重要的作用,但沿海地区地下水易受海水入侵影响。为保护地下水资源,通过构建海水入侵地下水质量指数(GQI_(SWI))模型对大连地区的地下水水质情况进行评价分析。结果显示,... 地下水在保障城乡居民生活用水、工业和农业生产用水中发挥着极其重要的作用,但沿海地区地下水易受海水入侵影响。为保护地下水资源,通过构建海水入侵地下水质量指数(GQI_(SWI))模型对大连地区的地下水水质情况进行评价分析。结果显示,该地区地下水化学类型主要为Ca-HCO_(3)型淡水和Ca-Mg-Cl型咸淡水过渡类,占比达91%。通过对55个监测点的GQI_(SWI)评分分析,发现81.8%的监测点海水入侵等级为淡水,其余18.2%的监测点为微咸水。空间分布方面,大连北部地下水质量较好,以淡水为主,而南部的旅顺口区和甘井子区出现了一定程度的海水入侵。研究结果有助于深入理解地下水化学演变和海水入侵的过程,为大连地区地下水资源的管理和保护以及城市建设和生态环境可持续协调发展提供决策依据。 展开更多
关键词 地下水 GQI_(swi) 海水入侵 水质评价
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Analysis of Micromechanical Properties at the Interface of Pre-wet SBS Modified Asphalt Mixture Based on Molecular Simulation Technology
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作者 CHEN Wuxing CHEN Shuang +3 位作者 YU Yan ZHANG Jiangyi XU Haiyang GUO Wei 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2025年第1期103-113,共11页
The pre-wetting of aggregate surface is a means to improve the interface performance of SBS modified asphalt and aggregate.The effect of pre-wetting technology on the interaction between SBS modified asphalt and aggre... The pre-wetting of aggregate surface is a means to improve the interface performance of SBS modified asphalt and aggregate.The effect of pre-wetting technology on the interaction between SBS modified asphalt and aggregate was analyzed by molecular dynamics simulation.The diffusion coefficient and concentration distribution of SBS modified asphalt on aggregate surface are included.The simulation results show that the diffusion coefficient of the aggregate surface of SBS modified asphalt is increased by 47.6%and 70.5%respectively after 110#asphalt and 130#asphalt are pre-wetted.The concentration distribution of SBS modified asphalt on the aggregate surface after pre-wetting is more uniform.According to the results of interface energy calculation,the interface energy of SBS modified bitumen and aggregate can be increased by about 5%after pre-wetting.According to the results of molecular dynamics simulation,the pre-wetting technology can effectively improve the interface workability of SBS modified bitumen and aggregate,so as to improve the interface performance. 展开更多
关键词 pre-wet oil-stone interface interface interaction interface mechanics molecular dynamics simulation
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Droplet-Enabled Controllable Manipulation of Tribo-Charges from Liquid-Solid Interface 被引量:1
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作者 Xunjia Li Jianjun Luo +1 位作者 Jianfeng Ping Zhong Lin Wang 《Engineering》 2025年第2期132-142,共11页
Efficient utilization of electrostatic charges is paramount for numerous applications,from printing to kinetic energy harvesting.However,existing technologies predominantly focus on the static qualities of these charg... Efficient utilization of electrostatic charges is paramount for numerous applications,from printing to kinetic energy harvesting.However,existing technologies predominantly focus on the static qualities of these charges,neglecting their dynamic capabilities as carriers for energy conversion.Herein,we report a paradigm-shifting strategy that orchestrates the swift transit of surface charges,generated through contact electrification,via a freely moving droplet.This technique ingeniously creates a bespoke charged surface which,in tandem with a droplet acting as a transfer medium to the ground,facilitates targeted charge displacement and amplifies electrical energy collection.The spontaneously generated electric field between the charged surface and needle tip,along with the enhanced water ionization under the electric field,proves pivotal in facilitating controlled charge transfer.By coupling the effects of charge self-transfer,contact electrification,and electrostatic induction,a dual-electrode droplet-driven(DD)triboelectric nanogenerator(TENG)is designed to harvest the water-related energy,exhibiting a two-orderof-magnitude improvement in electrical output compared to traditional single-electrode systems.Our strategy establishes a fundamental groundwork for efficient water drop energy acquisition,offering deep insights and substantial utility for future interdisciplinary research and applications in energy science. 展开更多
关键词 Solid-liquid interface engineering Energy harvesting device Triboelectric nanogenertor interface charge utilization Water energy
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Catalysis-Induced Highly-Stable Interface on Porous Silicon for High-Rate Lithium-Ion Batteries 被引量:2
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作者 Zhuobin Han Phornphimon Maitarad +11 位作者 Nuttapon Yodsin Baogang Zhao Haoyu Ma Kexin Liu Yongfeng Hu Siriporn Jungsuttiwong Yumei Wang Li Lu Liyi Shi Shuai Yuan Yongyao Xia Yingying Lv 《Nano-Micro Letters》 2025年第8期548-563,共16页
Silicon stands as a key anode material in lithium-ion battery ascribing to its high energy density.Nevertheless,the poor rate performance and limited cycling life remain unresolved through conventional approaches that... Silicon stands as a key anode material in lithium-ion battery ascribing to its high energy density.Nevertheless,the poor rate performance and limited cycling life remain unresolved through conventional approaches that involve carbon composites or nanostructures,primarily due to the un-controllable effects arising from the substantial formation of a solid electrolyte interphase(SEI)during the cycling.Here,an ultra-thin and homogeneous Ti doping alumina oxide catalytic interface is meticulously applied on the porous Si through a synergistic etching and hydrolysis process.This defect-rich oxide interface promotes a selective adsorption of fluoroethylene carbonate,leading to a catalytic reaction that can be aptly described as“molecular concentration-in situ conversion”.The resultant inorganic-rich SEI layer is electrochemical stable and favors ion-transport,particularly at high-rate cycling and high temperature.The robustly shielded porous Si,with a large surface area,achieves a high initial Coulombic efficiency of 84.7%and delivers exceptional high-rate performance at 25 A g^(−1)(692 mAh g^(−1))and a high Coulombic efficiency of 99.7%over 1000 cycles.The robust SEI constructed through a precious catalytic layer promises significant advantages for the fast development of silicon-based anode in fast-charging batteries. 展开更多
关键词 Catalytic interface MESOPOROUS Inorganic-rich SEI Silicon anode Lithium-ion batteries
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