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The Number of Boundary H-points of Convex H-quadrilateral
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作者 WEI Xianglin ZHU Weili 《数学进展》 北大核心 2025年第1期177-186,共10页
An H-polygon is a polygon with corners in the set of vertices of a tiling of R~2 by regular hexagons of unit edge.It is known that any H-triangle with exactly k interior H-points can have at most 3k+7 boundary H-point... An H-polygon is a polygon with corners in the set of vertices of a tiling of R~2 by regular hexagons of unit edge.It is known that any H-triangle with exactly k interior H-points can have at most 3k+7 boundary H-points.In this note we prove that any convex H-quadrilateral with exactly k interior H-points can have at most 3k+7 boundary H-points. 展开更多
关键词 discrete geometry regular hexagonal tiling H-quadrilateral H-point
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Synthesis of hexagonal diamond:A review
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作者 CHEN De-si LI Heng-yu +1 位作者 DONG Jia-jun YAO Ming-guang 《新型炭材料(中英文)》 北大核心 2025年第3期584-596,共13页
Lonsdaleite,also known as hexagonal diamond,is an allotrope of carbon with a hexagonal crystal structure,which was discovered in the nanostructure of the Canyon Diablo meteorite.Theoretical calculations have shown tha... Lonsdaleite,also known as hexagonal diamond,is an allotrope of carbon with a hexagonal crystal structure,which was discovered in the nanostructure of the Canyon Diablo meteorite.Theoretical calculations have shown that this structure gives it exceptional physical properties that exceed those of cubic diamond,making it highly promising for groundbreaking applications in superhard cutting tools,wide-bandgap semiconductor devices,and materials for extreme environments.As a result,the controllable synthesis of hexagonal diamond has emerged as a cutting-edge research focus in materials science.This review briefly outlines the progress in this area,with a focus on the mechanisms governing its key synthesis conditions,its intrinsic physical properties,and its potential applications in various fields. 展开更多
关键词 Hexagonal diamond GRAPHITE High pressure and high temperature Phase transition mechanism Widebandgap semiconductors
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Observation of Topological Nodal-Ring Phonons in Monolayer Hexagonal Boron Nitride
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作者 Zhiyu Tao Yani Wang +7 位作者 Shuyi He Jiade Li Siwei Xue Zhibin Su Jiatao Sun Hailin Peng Jiandong Guo Xuetao Zhu 《Chinese Physics Letters》 2025年第2期206-228,共23页
Topological physics has evolved from its initial focus on fermionic systems to the exploration of bosonic systems,particularly phononic excitations in crystalline materials.Two-dimensional(2D)topological phonons emerg... Topological physics has evolved from its initial focus on fermionic systems to the exploration of bosonic systems,particularly phononic excitations in crystalline materials.Two-dimensional(2D)topological phonons emerge as promising candidates for future technological applications.Currently,experimental verification of 2D topological phonons has remained exclusively limited to graphene,a constraint that hinders their applications in phononic devices.Here,we report experimental evidence of topological phonons in monolayer hexagonal boron nitride using advanced high-resolution electron energy loss spectroscopy.Our high-precision measurements explicitly demonstrate two topological nodal rings in monolayer hexagonal boron nitride,protected by mirror symmetry,expanding the paradigm of 2D topological phonons beyond graphene.This research not only deepens fundamental understanding of 2D topological phonons,but also establishes a phononic device platform based on wide-bandgap insulators,crucial for advancements in electronics and photonics applications. 展开更多
关键词 spectroscopy TOPOLOGICAL HEXAGONAL
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Optimization of carbon irradiation parameters for creating spin defects in hexagonal boron nitride
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作者 Fei Ren Zongwei Xu Yiyuan Wu 《Nanotechnology and Precision Engineering》 2025年第3期149-158,共10页
Negatively charged boron vacancy(V_(B)^(-))spin defects are stable in nanoscale hexagonal boron nitride(hBN)flakes,which can be easily integrated into two-dimensional materials and devices to serve as both sensors and... Negatively charged boron vacancy(V_(B)^(-))spin defects are stable in nanoscale hexagonal boron nitride(hBN)flakes,which can be easily integrated into two-dimensional materials and devices to serve as both sensors and protective materials.Ion irradiation is frequently employed to create V_(B)^(-)spin defects in hBN.However,the optimal ion irradiation parameters remain unclear,even though they play a crucial role in determining the depth and density of the defects,which in turn affect sensing sensitivity.In this work,we optimize the carbon ion irradiation parameters for creating V_(B)^(-)spin defects by varying the irradiation dose and the incident angle.For 30 keV carbon ion irradiation,the optimal irradiation dose to create a V_(B)^(-)ensemble is determined to be 4×10^(13)ions/cm^(2),and both continuous and pulsed optically detected magnetic resonance measurements are used to estimate the magnetic sensitivity and spin coherence properties.Moreover,the incident angle of energetic ions is found to influence both the depth and density distributions of the V_(B)^(-)ensemble,a factor that is often overlooked.These results pave the way for improving the performance of quantum sensors based on hBN spin defects by optimizing the irradiation parameters. 展开更多
关键词 Hexagonal boron nitride Ion irradiation Spin defect ODMR Coherence properties Quantum sensing
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Comparative Study of the Hexagonal Structure of the SiC JBS Source Region
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作者 Yili Xu Xin Li 《Journal of Electronic Research and Application》 2025年第1期61-66,共6页
Silicon carbide(SiC)junction barrier Schottky(JBS)diode has been widely used in power electronic systems due to its excellent physical characteristics and electrical performance,and the structural design of its source... Silicon carbide(SiC)junction barrier Schottky(JBS)diode has been widely used in power electronic systems due to its excellent physical characteristics and electrical performance,and the structural design of its source area has a particularly significant impact on the performance.This study provides a comparative analysis of the SiC JBS diode performance of different hexagonal structures,aiming to provide theoretical support and practical guidance for the optimization of JBS diode performance.Through theoretical derivation,experimental verification and data processing,the paper deeply analyzes the influence of hexagonal structure on JBS diode current distribution and breakdown voltage,and proposes a targeted optimization strategy. 展开更多
关键词 SIC JBS diode Hexagon structure Performance comparison
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Influence of Height of Bionic Hexagonal Texture on Tactile Perception
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作者 WANG Lei ZHU Yuqin +2 位作者 FANG Xingxing WANG Shuai TANG Wei 《Journal of Shanghai Jiaotong university(Science)》 2025年第3期461-468,共8页
It is significant to process textures with special functions similar to animal surfaces based on bionics and improve the friction stability and contact comfort of contact surfaces for the surface texture design of tac... It is significant to process textures with special functions similar to animal surfaces based on bionics and improve the friction stability and contact comfort of contact surfaces for the surface texture design of tactile products.In this paper,a bionic hexagonal micro-convex texture was prepared on an acrylic surface by laser processing.The friction mechanism of a finger touching the bionic hexagonal micro-convex texture under different touch speeds and pressures,and the effect of the height of the texture on tactile perception were investigated by finite element,subjective evaluation,friction,and EEG tests.The results showed that the deformation friction was the main friction component when the finger touched the bionic hexagonal texture,and the slipperiness and friction factor showed a significant negative correlation.As the touch speed decreased or the touch force increased,the hysteresis friction of the fingers as well as the interlocking friction increased,and the slipperiness perception decreased.The bionic hexagonal texture with higher convexity caused a higher friction factor,lower slipperiness perception,and lower P300 peak.Hexagonal textures with lower convexity,lower friction factor,and higher slipperiness perception required greater brain attentional resources and intensity of tactile information processing during tactile perception. 展开更多
关键词 bionic hexagonal texture tactile perception FRICTION event-related potentials subjective evaluation
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Effects of helium ion irradiation and thermal annealing on the optical and structural properties of hexagonal boron nitride
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作者 Guan-Lin Liu Ji-Lian Xu +13 位作者 Peng-Tao Jing Jing-Jing Shao Xu Guo Yun-Tao Wu Feng Qin Zhen Cheng Deming Liu Yang Bao Hai Xu Li-Gong Zhang Da Zhan Jia-Xu Yan Lei Liu De-Zhen Shen 《Chinese Physics B》 2025年第5期578-586,共9页
Hexagonal boron nitride(h-BN)has emerged as a promising two-dimensional material for quantum and optoelectronic applications,with its unique ability to host engineered defects enabling single-photon emission and spin ... Hexagonal boron nitride(h-BN)has emerged as a promising two-dimensional material for quantum and optoelectronic applications,with its unique ability to host engineered defects enabling single-photon emission and spin manipulation.This study investigates defect formation in h-BN using focused helium ion beam(He^(+)FIB)irradiation and post-annealing treatments.We demonstrate that helium ion irradiation at doses up to 2×10^(9) ions/μm^(2) does not induce phase transitions or amorphization.Spectroscopic analyses,including differential reflectance spectroscopy(DRS),photoluminescence(PL),and Raman spectroscopy,reveal substantial defect formation and structural modifications.Notably,the irradiation induces a softening of in-plane and interlayer phonon modes,characterized by frequency redshifts of 10.5 cm^(-1) and 3.2 cm^(-1),respectively.While high-temperature thermal annealing mitigates lattice defects and facilitates single-photon emission,the E_(2g) peak width remains 38%broader and the shear mode peak width is 60%broader compared to pre-annealing conditions in the Raman spectra,indicating residual structural degradation.These findings provide insights into defect engineering mechanisms in h-BN,offering guidance for optimizing processing conditions and advancing quantum and optoelectronic device technologies. 展开更多
关键词 hexagonal boron nitride focused ion beam defect engineering quantum materials SPECTROSCOPY
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Changes of corneal endothelial cells and nuclear density in cataract patients with type 2 diabetes
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作者 Liu Yueqi Liu Gaoqin +2 位作者 Chen Zhigang Han Xue Lu Peirong 《国际眼科杂志》 2025年第9期1392-1398,共7页
AIM:To investigate the characteristics of corneal endothelial cells(CEC)and nuclear density(ND)in cataract patients with type 2 diabetes and to assess the impact of blood glucose related indicators.METHODS:A total of ... AIM:To investigate the characteristics of corneal endothelial cells(CEC)and nuclear density(ND)in cataract patients with type 2 diabetes and to assess the impact of blood glucose related indicators.METHODS:A total of 187 cases(187 eyes)that underwent cataract surgery at our hospital from July 2023 to July 2024 were enrolled.CEC were measured using a non-contact specular microscope.ND was measured through IOLMaster 700.A total of 187 participants were further stratified based on glycosylated hemoglobin(HbA1c)and fasting blood glucose(FBG)levels.Correlation analyses and multiple linear regression analyses were used to elucidate the association between diabetic status and ocular parameters.We measured the concentrations of ascorbic acid(AA)in the aqueous humor of 52 participants.RESULTS:Compared to the control group,the diabetic group exhibited larger maximum endothelial cell size,lower endothelial cell density(ECD),a reduced proportion of hexagonal cells,higher ND,and lower corneal vertex equivalent spherical power(Scv;P<0.05).Correlation analysis revealed those changes of CEC and ND were significantly associated with the level of FBG,HbA1c,and the duration of diabetes(P<0.05).Among 52 participants,diabetic patients had lower levels of AA in their aqueous humor,indicating a diminished antioxidant ability.CONCLUSION:Diabetic state can significantly influence corneal maximum cell size,hexagonal cell ratio and ND in cataract patients,potentially linked to a decrease in total antioxidant capacity of the aqueous humor. 展开更多
关键词 corneal endothelium cell hexagonal cell ratio nuclear density ascorbic acid blood glucose
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Research on the X-ray polarization deconstruction method based on hexagonal convolutional neural network
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作者 Ya-Nan Li Jia-Huan Zhu +5 位作者 Huai-Zhong Gao Hong Li Ji-Rong Cang Zhi Zeng Hua Feng Ming Zeng 《Nuclear Science and Techniques》 2025年第2期49-61,共13页
Track reconstruction algorithms are critical for polarization measurements.Convolutional neural networks(CNNs)are a promising alternative to traditional moment-based track reconstruction approaches.However,the hexagon... Track reconstruction algorithms are critical for polarization measurements.Convolutional neural networks(CNNs)are a promising alternative to traditional moment-based track reconstruction approaches.However,the hexagonal grid track images obtained using gas pixel detectors(GPDs)for better anisotropy do not match the classical rectangle-based CNN,and converting the track images from hexagonal to square results in a loss of information.We developed a new hexagonal CNN algorithm for track reconstruction and polarization estimation in X-ray polarimeters,which was used to extract the emission angles and absorption points from photoelectron track images and predict the uncer-tainty of the predicted emission angles.The simulated data from the PolarLight test were used to train and test the hexagonal CNN models.For individual energies,the hexagonal CNN algorithm produced 15%-30%improvements in the modulation factor compared to the moment analysis method for 100%polarized data,and its performance was comparable to that of the rectangle-based CNN algorithm that was recently developed by the Imaging X-ray Polarimetry Explorer team,but at a lower computational and storage cost for preprocessing. 展开更多
关键词 X-ray polarization Track reconstruction Deep learning Hexagonal conventional neural network
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Solution of multigroup neutron diffusion equation in 3D hexagonal geometry using nodal Green's function method
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作者 Il-Mun Ho Kum-Hyok Ok Chol So 《Nuclear Science and Techniques》 2025年第9期33-42,共10页
In this paper,we propose a numerical calculation model of the multigroup neutron diffusion equation in 3D hexagonal geometry using the nodal Green's function method and verified it.We obtained one-dimensional tran... In this paper,we propose a numerical calculation model of the multigroup neutron diffusion equation in 3D hexagonal geometry using the nodal Green's function method and verified it.We obtained one-dimensional transverse integrated equations using the transverse integration procedure over 3D hexagonal geometry and denoted the solutions as a nodal Green's functions under the Neumann boundary condition.By applying a quadratic polynomial expansion of the transverse-averaged quantities,we derived the net neutron current coupling equation,equation for the expansion coefficients of the transverse-averaged neutron flux,and formulas for the coefficient matrix of these equations.We formulated the closed system of equations in correspondence with the boundary conditions.The proposed model was tested by comparing it with the benchmark for the VVER-440 reactor,and the numerical results were in good agreement with the reference solutions. 展开更多
关键词 NGFM Hexagonal geometry Multigroup neutron diffusion equation
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The transition from rate-independent to rate-controlled ductility of hexagonal titanium upon cryogenic deformation
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作者 Zhuang-zhuang Liu Yang Zhang +4 位作者 Dan-yang Li Qiang Zhu Peng Zhang Hao Wu Guo-hua Fan 《Rare Metals》 2025年第10期7973-7983,共11页
Strain rate is a critical factor influencing the mechanical response of hexagonal close-packed titanium under cryogenic conditions.In this study,uniaxial tensile tests were performed on commercially pure titanium at 7... Strain rate is a critical factor influencing the mechanical response of hexagonal close-packed titanium under cryogenic conditions.In this study,uniaxial tensile tests were performed on commercially pure titanium at 77 K over a broad strain rate range from 0.001 to 1 s^(-1).A critical strain rate of approximately 0.5 s^(-1)was identified,above which ductility exhibits a pronounced reduction,whereas below this threshold,ductility remains relatively stable.Through comprehensive analyses of strain evolution,deformed microstructure,and fracture morphology,this behavior is attributed to severe localized adiabatic heating resulting from inhomogeneous deformation,rather than conventional twin or shear mechanisms. 展开更多
关键词 strain rate rate controlled ductility cryogenic deformation cryogenic conditionsin tensile tests hexagonal titanium rate independent comprehensive analyses strain evolutiondefo
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Synergistic effects and electrocatalytic insight of single-phase hexagonal structure as low-temperature solid oxide fuel cell cathode
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作者 Yuzheng Lu Asma Noor +6 位作者 Jahangeer Ahmed Najah Alwadie Majid Niaz Akhtar Sara Abid Muhammad Yousaf Mustafa Mahmoud Muhammad Aslam 《Journal of Rare Earths》 2025年第7期1390-1399,共10页
Enhancing the electrocatalytic activity of the electrode materials,specifically oxygen reduction reaction(ORR),at lower operating temperatures(<600℃)is the prime rank to realize the commercialization of solid oxid... Enhancing the electrocatalytic activity of the electrode materials,specifically oxygen reduction reaction(ORR),at lower operating temperatures(<600℃)is the prime rank to realize the commercialization of solid oxide fuel cells(SOFCs)research.Herein,a new hexagonal structure-based cathode material was developed with the co-doping of Gd_(2)O_(3)and Cr_(2)O_(3)of parent SrFe_(12)O_(19)oxide,respectively.At 550-475℃,Sr_(0.90)Gd_(0.10)Fe_(11.90)Cr_(0.10)O_(19)(SFO-10)cathode sample leading to the large peak power density(PPD)of 395 mW/cm^(2),has appropriate surface oxygen defects(O_(β))up to 17%,as verified by X-ray photoelectron microscopy(XPS).Theoretical calculations reveal that the co-doping of Gd and Cr oxides creates lattice disorder at the hexagonal lattice,which decreases the energy barrier for ion transport and enhances the electrocatalytic characteristics of ORR.Consequently,the SFO-10 cathode shows a favorable ORR activity with the least lower polarization resistance(ASR)at 550℃with gadolinium-doped ceria(GDC)electrolyte.This work provides a self-assembled single-phase hexagonal cathode to accelerate the lowtemperature hindrance of SOFC technology. 展开更多
关键词 Hexagonal structure Solid oxide fuel cell(SOFC) Electrocatalytic activity CATHODE Gd and Cr doping Rare earths
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Magnon Splitting and Magnon Spin Transport in Altermagnets
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作者 Kun Wu Jianting Dong +2 位作者 Meng Zhu Fanxing Zheng Jia Zhang 《Chinese Physics Letters》 2025年第7期206-228,共23页
Altermagnets,a new type of collinear antiferromagnet,exhibiting non-degenerate electron and magnon dispersion in momentum space have attracted intensive research attention.We theoretically analyze the origin and featu... Altermagnets,a new type of collinear antiferromagnet,exhibiting non-degenerate electron and magnon dispersion in momentum space have attracted intensive research attention.We theoretically analyze the origin and feature of chiral magnon splitting in representative altermagnets including tetragonal RuO_(2),hexagonal MnTe,and orthorhombic LaMnO_(3).The magnon spin transport properties including spin Seebeck and spin Nernst coefcients have been investigated.Through these materials,we demonstrate the diference of chiral splitting in d-wave and g-wave antiferromagnet on magnon transport.RuO2with planar magnon splitting exhibits signifcant magnon spin Nernst and magnon spin Seebeck anisotropy in(110)and(001)planes,whereas MnTe,due to its bulk-like magnon splitting,is incapable of producing magnon spin Nernst efect.Our work may provide in-depth understanding on the mechanisms of nonrelativistic magnon splitting and thermal spin transport in altermagnets. 展开更多
关键词 orthorhombic lamno spin nernst coefcients chiral magnon tetragonal ruo hexagonal collinear antiferromagnetexhibiting spin seebeck magnon splitting magnon spin transport properties
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Phonon Thermal Transport at Interfaces of Graphene/Quasi-Hexagonal Phase Fullerene Heterostructure
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作者 Rui-Peng Wang Tao-Tao Yu +4 位作者 Muhammad Asif Shakoori Ming-JunHan Yu-Xiao Hu Ho-Kin Tang Hai-Peng Li 《Chinese Physics Letters》 2025年第4期67-72,共6页
In this study,we employed molecular dynamics simulations to investigate the interfacial thermal conductance(ITC)and phonon transport of heterostructures composed of graphene(GE)and quasi-hexagonal phase fullerene(qHPC... In this study,we employed molecular dynamics simulations to investigate the interfacial thermal conductance(ITC)and phonon transport of heterostructures composed of graphene(GE)and quasi-hexagonal phase fullerene(qHPC60).We examined the effects of size,interface interaction coefficients,and thermal equilibrium time on the ITC of the GE/qHPC60 heterostructure. 展开更多
关键词 molecular dynamics simulations GRAPHENE phonon transport quasi hexagonal phase fullerene HETEROSTRUCTURE phonon thermal transport interfacial thermal conductance interfacial thermal conductance itc
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Screening of TiB2-based ternary composites for X-ray transparent heaters in high-pressure and high-temperature experiments
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作者 Yutian Zhang Guoliang Niu +4 位作者 Pengfei Tan Chuanhui Zhu Huiyang Gou David Walker Man-Rong Li 《Matter and Radiation at Extremes》 2025年第6期122-130,共9页
High-pressure and high-temperature(HPHT)experiments in large-volume presses(LVPs)benefit from reliable,available,and affordable heaters to achieve stable and homogeneous heating and,in some circumstances,X-ray transpa... High-pressure and high-temperature(HPHT)experiments in large-volume presses(LVPs)benefit from reliable,available,and affordable heaters to achieve stable and homogeneous heating and,in some circumstances,X-ray transparency for monitoring of properties of an in situ experiment using X-ray diffraction and contrast imaging techniques.We have developed heaters meeting the above requirements,and we screen the ternary system TiB2–SiC–hexagonal(h)BN(denoted as TSB)to enable manufacture of X-ray transparent heaters for HPHT runs.Heaters fabricated using optimized TSB-631(60%TiB2–30%SiC–10%hBN by weight)have been tested in modified truncated assemblies,showing excellent performance up to 22 GPa and 2395 K in HPHT runs.TSB-631 has good ceramic machinability,outstanding reproducibility,high stability,and negligible temperature gradient for runs at 3–7 GPa with cell assemblies with truncated edge lengths of 8–12 mm.The fabricated heaters not only show excellent performance in HPHT runs,but also demonstrate high X-ray transparency over a wide X-ray wavelength region,indicating potential applications for in situ X-ray diffraction/imaging under HPHT conditions in LVPs and other high-pressure apparatus. 展开更多
关键词 TIB monitoring properties Hexagonal boron nitride X ray transparent heaters large volume presses Ternary composites situ experiment high pressure high temperature experiments
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Room Temperature Thermal Switching Based on Monolayer Boron Nitride
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作者 Dingbo Zhang Ke Wang +2 位作者 Shuai Chen Yuxiang Ni Gang Zhang 《Chinese Physics Letters》 2025年第9期102-125,共24页
The research on materials capable of manipulating thermal conductivity continues to fuel the development of thermal controlling devices.Here,using ab initio calculations and the Boltzmann transport equation,we demonst... The research on materials capable of manipulating thermal conductivity continues to fuel the development of thermal controlling devices.Here,using ab initio calculations and the Boltzmann transport equation,we demonstrate that the thermal conductivity of semi-fluorinated hexagonal boron nitride(h-BN)can be reversibly manipulated at 300 K,and the ratio for the regulation of thermal conductivity reaches up to 11.23.Such behavior originates from the high sensitivity of thermal conductivity to magnetic ordering.Semi-fluorinated h-BN is a paramagnetic material at room temperature due to its Curie temperature of 270 K.Impressively,semi-fluorinated h-BN can be modulated into a ferromagnetic system by adding an external magnetic field of 11.15 T,resulting in greatly and reversibly tunable thermal conductivity at room temperature.Furthermore,in-depth analyses of phonon properties show that compared with the paramagnetic phase,both ferromagnetic and antiferromagnetic semi-fluorinated h-BN significantly reduce phonon scattering and anharmonicity,thereby enhancing thermal conductivity.The results qualify semi-fluorinated h-BN as a potential candidate for thermal switching applications at room temperature. 展开更多
关键词 ab initio calculations boltzmann transport equationwe thermal controlling deviceshereusing thermal conductivity regulation thermal conductivity magnetic ordering manipulating thermal conductivity semi fluorinated hexagonal boron nitride
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Using Targeted Phonon Excitation to Modulate Thermal Conductivity of Boron Nitride
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作者 Dongkai Pan Tianhao Li +3 位作者 Xiao Wan Zhicheng Zong Yangjun Qin Nuo Yang 《Chinese Physics Letters》 2025年第7期449-453,共5页
Recent advancements in thermal conductivity modulating strategies have shown promising enhancements to the thermal management capabilities of two-dimensional materials.In this article,both the iterative Boltzmann tran... Recent advancements in thermal conductivity modulating strategies have shown promising enhancements to the thermal management capabilities of two-dimensional materials.In this article,both the iterative Boltzmann transport equation solution and the two-temperature model were employed to investigate the efficacy of targeted phonon excitation applied to hexagonal boron nitride(hBN).The results indicate significant modifications to hBN's thermal conductivity,achieving increases of up to 30.1%as well as decreases of up to 59.8%.These findings validate the reliability of the strategy,expand its scope of applicability,and establish it as a powerful tool for tailoring thermal properties across a wider range of fields. 展开更多
关键词 thermal conductivityachieving thermal management capabilities boron nitride targeted phonon excitation iterative boltzmann transport equation solution hexagonal boron nitride hbn thermal conductivity modulating strategies thermal conductivity
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On the interfacial behavior of a one-dimensional hexagonal piezoelectric quasicrystal film based on the beam theory
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作者 Wenkai ZHANG C.S.LU +2 位作者 Minghao ZHAO Cuiying FAN Huayang DANG 《Applied Mathematics and Mechanics(English Edition)》 2025年第2期289-304,共16页
In this paper,the mechanical response of a one-dimensional(1D)hexagonal piezoelectric quasicrystal(PQC)thin film is analyzed under electric and temperature loads.Based on the Euler-Bernoulli beam theory,a theoretical ... In this paper,the mechanical response of a one-dimensional(1D)hexagonal piezoelectric quasicrystal(PQC)thin film is analyzed under electric and temperature loads.Based on the Euler-Bernoulli beam theory,a theoretical model is proposed,resulting in coupled governing integral equations that account for interfacial normal and shear stresses.To numerically solve these integral equations,an expansion method using orthogonal Chebyshev polynomials is employed.The results provide insights into the interfacial stresses,axial force,as well as axial and vertical deformations of the PQC film.Additionally,fracture criteria,including stress intensity factors,mode angles,and the J-integral,are evaluated.The solution is compared with the membrane theory,neglecting the normal stress and bending deformation.Finally,the effects of stiffness and aspect ratio on the PQC film are thoroughly discussed.This study serves as a valuable guide for controlling the mechanical response and conducting safety assessments of PQC film systems. 展开更多
关键词 one-dimensional(1D)hexagonal piezoelectric quasicrystal(PQC)film beam theory electric and temperature loads Chebyshev polynomial interfacial behavior
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Elevating dual-redox photocatalysis with p-n junction:Hydrangea-like Zn_(3)In_(2)S_(6)nanoflowers coupled hexagonal Co_(3)O_(4)for cooperative hydrogen and benzaldehyde production
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作者 Xin-Quan Tan Grayson Zhi Sheng Ling +3 位作者 Tan Ji Siang Xianhai Zeng Abdul Rahman Mohamed Wee-Jun Ong 《Nano Materials Science》 2025年第2期169-179,共11页
Despite advances in photocatalytic half-reduction reactions,challenges remain in effectively utilizing electron-hole pairs in concurrent redox processes.The present study involved the construction of a p-n junction Co... Despite advances in photocatalytic half-reduction reactions,challenges remain in effectively utilizing electron-hole pairs in concurrent redox processes.The present study involved the construction of a p-n junction Co_(3)O_(4)/Zn_(3)In_(2)S_(6)(CoZ)hybrid with a complementary band edge potential.The photocatalyst formed by the 2D assembled-nanostructure portrayed an optimal yield of 13.8(H_(2))and 13.1(benzaldehyde)mmol g^(-1)h^(-1)when exposed to light(λ>420 nm),surpassing 1%Pt-added ZIS(12.4(H_(2))and 10.71(benzaldehyde)mmol g^(-1)h^(-1)).Around 95%of the electron-hole utilization rate was achieved.The solar-to-hydrogen(STH)and apparent quantum yield(AQY)values of 0.466%and 4.96%(420nm)achieved by this system in the absence of sacrificial agents exceeded those of previous works.The exceptional performance was mostly ascribed to the synergistic development of adjoining p-n heterojunctions and the built-in electric field for effective charge separation.Moreover,scavenger studies elucidated the intricate mechanistic enigma of the dual-redox process,in which benzaldehyde was produced via O-H activation and subsequent C-H cleavage of benzyl alcohol over CoZ hybrids.Furthermore,the widespread use of the optimal 1-CoZ composites was confirmed in multiple photoredox systems.This work presents an innovative perspective on the construction of dual-functioning p-n heterojunctions for practical photoredox applications. 展开更多
关键词 Hexagonal Co_(3)O_(4) Zn_(3)In_(2)S_(6)nanoflowers Dual photoredox reaction Hydrogen evolution Benzyl alcohol oxidation p-n heterojunction
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Interfacial analysis of a penny-shaped one-dimensional hexagonal functionally graded piezoelectric quasicrystal film on a temperature-dependent substrate
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作者 Kai LUO Cuiying FAN +2 位作者 Minghao ZHAO CSLU Huayang DANG 《Applied Mathematics and Mechanics(English Edition)》 2025年第12期2297-2316,共20页
In this paper,we investigate the interfacial behavior of a thin,penny-shaped,one-dimensional(1D)hexagonal functionally graded(FG)piezoelectric quasicrystal(PQC)film bonded on a temperature-dependent elastic substrate ... In this paper,we investigate the interfacial behavior of a thin,penny-shaped,one-dimensional(1D)hexagonal functionally graded(FG)piezoelectric quasicrystal(PQC)film bonded on a temperature-dependent elastic substrate under thermal and electrical loads.The problem is modeled as axisymmetric based on the membrane theory,with the peeling stress and bending moment being disregarded.A potential theory method,combined with the Hankel transform technique,is utilized to derive the displacement field on the substrate surface.With perfect interfacial bonding assumption,an integral equation governing the phonon interfacial shear stress is formulated and numerically solved by the Chebyshev polynomials.Explicit expressions are derived for the interfacial shear stress,the internal stresses within the PQC film and the substrate,the axial strain,and the stress intensity factors(SIFs).Numerical simulations are conducted to investigate the effects of the film's aspect ratio,material inhomogeneity,material mismatch,and temperature-dependent material properties on its mechanical response.The results provide insights for the functional design and reliability assessment of FG PQC film/substrate systems. 展开更多
关键词 one-dimensional(1D)hexagonal piezoelectric quasicrystal(PQC)film functionally graded(FG)material three-dimensional(3D)interfacial behavior stress intensity factor(SIF) temperature-dependent material property
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