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| 1 | Low thermal conductivity of dense(TiZrHfVNbTa)C_(x) high-entropy carbides by tailoring carbon stoichiometry显示文摘Transition metal carbides are promising candidates for thermal protection materials due to their high melting points and excellent mechanical properties.However,the relatively high thermal conductivity is still a major obstacle to its application in an ultra-high-temperature insulation system.In this work,the low thermal conductivity of dense(TiZrHfVNbTa)Cx(x=0.6-1)high-entropy carbides has been realized by adjusting the carbon stoichiometry.The thermal conductivity gradually decreases from 10.6 W·m^(−1)·K^(−1) at room temperature to 6.4 W·m^(−1)·K^(−1) with carbon vacancies increasing.Due to enhanced scattering of phonons and electrons by the carbon vacancies,nearly full-dense(97.9%)(TiZrHfVNbTa)C_(0.6) possesses low thermal conductivity of 6.4 W·m^(−1)·K^(−1),thermal diffusivity of 2.3 mm^(2)·s^(−1),as well as electrical resistivity of 165.5μΩ·cm.The thermal conductivity of(TiZrHfVNbTa)C_(0.6) is lower than that of other quaternary and quinary high-entropy carbide ceramics,even if taking the difference of porosity into account in some cases,which is mainly attributed to compositional complexity and carbon vacancies.This provides a promising route to reduce the thermal conductivity of high-entropy carbides by increasing the number of metallic elements and carbon vacancies. | Lei CHEN Wen ZHANG Wenyu LU Boxin WEI Sijia HUO Yujin WANG Yu ZHOU | 2023 | Journal of Advanced Ceramics2023,12,1: | 0 |
| 2 | Nuclear peripheral chromatin-lamin B1 interaction is required for global integrity of chromatin architecture and dynamics in human cells显示文摘The eukaryotic genome is folded into higher-order conformation accompanied with constrained dynamics for coordinated genome functions.However,the molecular machinery underlying these hierarchically organized three-dimensional(3D)chromatin architecture and dynamics remains poorly understood.Here by combining imaging and sequencing,we studied the role of lamin B1 in chromatin architecture and dynamics.We found that lamin B1 depletion leads to detachment of lamina-associated domains(LADs)from the nuclear periphery accompanied with global chromatin redistribution and decompaction.Consequently,the interchromosomal as well as inter-compartment interactions are increased,but the structure of topologically associating domains(TADs)is not affected.Using live-cell genomic loci tracking,we further proved that depletion of lamin B1 leads to increased chromatin dynamics,owing to chromatin decompaction and redistribution toward nucleoplasm.Taken together,our data suggest that lamin B1 and chromatin interactions at the nuclear periphery promote LAD maintenance,chromatin compaction,genomic compartmentalization into chromosome territories and A/B compartments and confine chromatin dynamics,supporting their crucial roles in chromatin higher-order structure and chromatin dynamics. | Lei Chang Mengfan Li Shipeng Shao Chen Li Shanshan Ai Boxin Xue Yingping Hou Yiwen Zhang Ruifeng Li Xiaoying Fan Aibin He Cheng Li Yujie Sun | 2022 | Protein & Cell2022,13,4: | 0 |
| 3 | Correlation Analysis of Wind Turbine Temperature Rise and Exergy Efficiency Based on Field-Path Coupling显示文摘To solve the problems of large losses and low productivity of permanent magnet synchronous generators used in wind power systems,the field-circuit coupling method is used to accurately solve the electromagnetic field and temperature field of the generator.The loss distribution of the motor is accurately obtained by considering the influence of external circuit characteristics on its internal physical field.By mapping the losses to the corresponding part of the three-dimensional finite element model of the motor,the temperature field is solved,and the global temperature distribution of the generator,considering the influence of end windings,is obtained.By changing the air gap length,permanent magnet thickness,and winding conductivity,the relationship between the loss,temperature rise,and exergy efficiency can be obtained.By optimizing the air gap length,permanent magnet thickness,and winding conductivity,the best configuration and material properties can improve the efficiency of the motor by up to 4%. | Caifeng Wen Qiang Wang Yang Cao Liru Zhang Wenxin Wang Boxin Zhang Qian Du | 2023 | Energy Engineering2023,120,7: | 0 |
| 4 | PN-ImTLSM facilitates high-throughput low background single-molecule localization microscopy deep in the cell显示文摘When imaging the nucleus structure of a cell,the out-of-focus fluorescence acts as background and hinders the detection of weak signals.Light-sheet fluorescence microscopy(LSFM)is a wide-field imaging approach which has the best of both background removal and imaging speed.However,the commonly adopted orthogonal excitation/detection scheme is hard to be applied to single-cell imaging due to steric hindrance.For LSFMs capable of high spatiotemporal single-cell imaging,the complex instrument design and operation largely limit their throughput of data collection.Here,we propose an approach for high-throughput background-free fluorescence imaging of single cells facilitated by the Im-mersion Tilted Light Sheet Microscopy(ImTLSM).ImTLSM is based on a light-sheet projected off the optical axis of a water immersion objective.With the illumination objective and the detection objective placed opposingly,ImTLSM can rapidly patrol and optically section multiple individual cells while maintaining single-molecule detection sensitivity and resolution.Further,the simplicity and robustness of ImTLSM in operation and maintenance enables high-throughput image collection to establish background removal datasets for deep learning.Using a deep learning model to train the mapping from epi-illumination images to ImTLSM illumination images,namely PN-ImTLSM,we demonstrated crossmodality fluorescence imaging,transforming the epi-illumination image to approach the background removal performance obtained with ImTLSM.We demonstrated that PN-ImTLSM can be generalized to large-field homogeneous illumination imaging,thereby further improving the imaging throughput.In addition,compared to commonly used background removal methods,PN-ImTLSM showed much better performance for areas where the background intensity changes sharply in space,facilitating high-density single-molecule localization microscopy.In summary,PN-ImTLSM paves the way for background-free fluorescence imaging on ordinary inverted microscopes. | Boxin Xue Caiwei Zhou YizhiQin Yongzheng Li Yuao Sun Lei Chang Shipeng Shao Yongliang Li Mengling Zhang Chaoying Sun Renxi He Qian Peter Su Yujie Sun | 2021 | Biophysics Reports2021,7,4: | 0 |