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3D printed hybrid rocket fuels with μAl core-shell particles coated with polyvinylidene fluoride and polydopamine: Enhanced combustion characteristics 被引量:1
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作者 Qihang Chen Xiaolong Fu +6 位作者 Weitao Yang Suhang Chen Zhiming Guo Rui Hu Huijie Zhang Lianpeng Cui Xu Xia 《Defence Technology(防务技术)》 2025年第4期59-70,共12页
3D printing technology enhances the combustion characteristics of hybrid rocket fuels by enabling complex geometries. However, improvements in regression rates and energy properties of monotonous 3D printed fuels have... 3D printing technology enhances the combustion characteristics of hybrid rocket fuels by enabling complex geometries. However, improvements in regression rates and energy properties of monotonous 3D printed fuels have been limited. This study explores the impact of poly(vinylidene fluoride) and polydopamine-coated aluminum particles on the thermal and combustion properties of 3D printed hybrid rocket fuels. Physical self-assembly and anti-solvent methods were employed for constructing composite μAl particles. Characterization using SEM, XRD, XPS, FTIR, and μCT revealed a core-shell structure and homogeneous elemental distribution. Thermal analysis showed that PVDF coatings significantly increased the heat of combustion for aluminum particles, with maximum enhancement observed in μAl@PDA@PVDF(denoted as μAl@PF) at 6.20 k J/g. Subsequently, 3D printed fuels with varying pure and composite μAl particle contents were prepared using 3D printing. Combustion tests indicated higher regression rates for Al@PF/Resin composites compared to pure resin, positively correlating with particle content. The fluorocarbon-alumina reaction during the combustion stage intensified Al particle combustion, reducing residue size. A comprehensive model based on experiments provides insights into the combustion process of PDA and PVDF-coated droplets. This study advances the design of 3D-printed hybrid rocket fuels, offering strategies to improve regression rates and energy release, crucial for enhancing solid fuel performance for hybrid propulsion. 展开更多
关键词 Hybrid propulsion Regression rate 3D print fuels Micro aluminum core-shell mAl@PDA@PVDF
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The combustion reactivity of core-shell Al/Fluoropolymers and application in RDX-based explosives
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作者 Ting Liu Jian Wang +6 位作者 Jie Chen Cui Nie Yaofeng Mao Fude Nie Ruolei Zhong Wei Cao Jun Wang 《Defence Technology(防务技术)》 2025年第9期30-39,共10页
Aluminum(Al)powder is widely applied in thermobaric explosives due to its high energy density and favorable reaction kinetics.However,the inert oxide layer(Al_(2)O_(3))on Al particles limits combustion reactivity and ... Aluminum(Al)powder is widely applied in thermobaric explosives due to its high energy density and favorable reaction kinetics.However,the inert oxide layer(Al_(2)O_(3))on Al particles limits combustion reactivity and energy efficiency.Fluoride-based surface modification has been developed as an effective approach to address this issue.Here,four classical fluoropolymers(F11,F14,PVDF,PTFE)are employed as coatings to prepare core-shell Al/Fluoropolymer.The combustion experimental results demonstrate that the core-shell Al/PTFE exhibits the highest flame propagation rate(52.88 mm·ms^(-1))and pressure output(109.02 k Pa)performance.Consequently,core-shell Al/PTFE is selected as a high-energy fuel to prepare RDX/Al/PTFE microspheres via the emulsion and solvent evaporation method,which can enhance the energy performance of RDX.The effects of the core-shell Al/PTFE ratio and RDX content on the combustion heat and pressure output are systematically investigated.The peak pressure reaches a maximum of 187.8 k Pa when the mass ratio of RDX,Al,and PTFE is 60:25:10.Additionally,RDX/Al/PTFE microspheres exhibit significantly higher laser-induced air shock velocities,detonation heat,and detonation pressure than those of pure RDX and RDX/Al.The mechanism underlying the enhanced reactivity and energetic performance is attributed to the ability of PTFE to etch the inert Al_(2)O_(3)shell on the surface of Al particles,thereby improving post-combustion reactions and significantly increasing the overall energy output of RDX explosives.This work offers a novel design strategy for high-energy structural thermobaric explosives for the practical applications. 展开更多
关键词 core-shell Al/Fluoropolymers RDX/Al/PTFE Microspheres Combustion reactivity Energetic performance
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Microstructure evolution and tribological behavior of TiC/Ti_(2)AlC core-shell particle-reinforced composite coatings
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作者 LIU Si-yuan MO Tai-qian +3 位作者 LIN Bo WANG Xue-jian XIAO Hua-qiang MA Kai 《Journal of Central South University》 2025年第9期3255-3271,共17页
TiC/Ti_(2)AlC core-shell structure reinforced Ti-based composite coating was prepared by laser cladding technology.The effect of Ti_(2)AlC content on the microstructure and mechanical behavior of the coating was studi... TiC/Ti_(2)AlC core-shell structure reinforced Ti-based composite coating was prepared by laser cladding technology.The effect of Ti_(2)AlC content on the microstructure and mechanical behavior of the coating was studied.The results showed that the reinforced phase was mainly TiC/Ti_(2)AlC MAX phase core-shell structure at 20%Ti_(2)AlC content.According to the synthesis mechanism,Ti_(2)AlC nucleated on TiC through the diffusion of Al atoms to further generate the core-shell structure.The friction and wear test results showed that the wear resistance of the coating was significantly improved under the load distribution effect of the core-shell structure.The friction coefficient decreased to 0.342,and the wear rate reached 8.19×10^(−5)mm^(3)/(N·m),which was only 47.07%of TC4 substrate. 展开更多
关键词 laser cladding MAX phase decomposition core-shell structure frictional wear
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Interfacial reinforcement of core-shell HMX@energetic polymer composites featuring enhanced thermal and safety performance 被引量:2
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作者 Binghui Duan Hongchang Mo +3 位作者 Bojun Tan Xianming Lu Bozhou Wang Ning Liu 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第1期387-399,共13页
The weak interface interaction and solid-solid phase transition have long been a conundrum for 1,3,5,7-tetranitro-1,3,5,7-tetraazacyclooctane(HMX)-based polymer-bonded explosives(PBX).A two-step strategy that involves... The weak interface interaction and solid-solid phase transition have long been a conundrum for 1,3,5,7-tetranitro-1,3,5,7-tetraazacyclooctane(HMX)-based polymer-bonded explosives(PBX).A two-step strategy that involves the pretreatment of HMX to endow—OH groups on the surface via polyalcohol bonding agent modification and in situ coating with nitrate ester-containing polymer,was proposed to address the problem.Two types of energetic polyether—glycidyl azide polymer(GAP)and nitrate modified GAP(GNP)were grafted onto HMX crystal based on isocyanate addition reaction bridged through neutral polymeric bonding agent(NPBA)layer.The morphology and structure of the HMX-based composites were characterized in detail and the core-shell structure was validated.The grafted polymers obviously enhanced the adhesion force between HMX crystals and fluoropolymer(F2314)binder.Due to the interfacial reinforcement among the components,the two HMX-based composites exhibited a remarkable increment of phase transition peak temperature by 10.2°C and 19.6°C with no more than 1.5%shell content,respectively.Furthermore,the impact and friction sensitivity of the composites decreased significantly as a result of the barrier produced by the grafted polymers.These findings will enhance the future prospects for the interface design of energetic composites aiming to solve the weak interface and safety concerns. 展开更多
关键词 HMX crystals Polyalcohol bonding agent Energetic polymer core-shell structure Interfacial reinforcement
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Formation and characterization of core-shell CL-20/TNT composite prepared by spray-drying technique 被引量:14
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作者 Chang-gui Song Xiao-dong Li +3 位作者 Yue Yang Hui-min Liu Ying-xin Tan Jing-yu Wang 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2021年第6期1936-1943,共8页
The core-shell 2,4,6,8,10,12-Hexanitro-2,4,6,8,10,12-hexaazaisowurtzitane/2,4,6-Trinitrotoluene(CL-20/TNT)composite was prepared by spray-drying method in which sensitive high energy explosive(CL-20)was coated with in... The core-shell 2,4,6,8,10,12-Hexanitro-2,4,6,8,10,12-hexaazaisowurtzitane/2,4,6-Trinitrotoluene(CL-20/TNT)composite was prepared by spray-drying method in which sensitive high energy explosive(CL-20)was coated with insensitive explosive(TNT).The structure and properties of different formulations of CL-20/TNT composite and CL-20/TNT mixture were characterized by scanning electron microscopy(SEM),Transmission electron microscopy(TEM),Laser particle size analyzer,X-ray photoelectron spectroscopy(XPS),X-ray diffraction(XRD),differential scanning calorimetry(DSC),impact sensitivity test and detonation performance.The results of SEM,TEM,XPS and XRD show that e-CL-20 particles are coated by TNT.When the ratio of CL-20/TNT is 75/25,core-shell structure is well formed,and thickness of the shell is about 20e30 nm.And the analysis of heat and impact show that with the increase of TNT content,the TNT coating on the core-shell composite material can not only catalyze the thermal decomposition of core material(CL-20),but also greatly reduce the impact sensitivity.Compared with the CL-20/TNT mixture(75/25)at the same ratio,the characteristic drop height of core-shell CL-20/TNT composite(75/25)increased by 47.6%and the TNT coating can accelerate the nuclear decomposition in the CL-20/TNT composites.Therefore,the preparation of the core-shell composites can be regarded as a unique means,by which the composites are characterized by controllable decomposition rate,high energy and excellent mechanical sensitivity and could be applied to propellants and other fields. 展开更多
关键词 Energetic materials CL-20(2 4 6 8 10 12-hexanitro-2 4 6 8 10 12-hexaazaisowurtzitane) TNT(2 4 6-Trinitrotoluene) Spray-drying method core-shell structure
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PREPARATION OF ACRYLIC SUPERABSORBENTS WITH CORE-SHELL STRUCTURE BY MODIFIED INVERSE SUSPENSION POLYMERIZATION 被引量:10
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作者 崔英德 郭建维 +1 位作者 廖列文 尹国强 《化工学报》 EI CAS CSCD 北大核心 2000年第6期723-724,共2页
关键词 SUPERABSORBENTS core-shell structure inverse suspension
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Enhanced thermal- and impact-initiated reactions of PTFE/Al energetic materials through ultrasonic-assisted core-shell construction 被引量:3
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作者 Zhou-yang Wu Jin-xu Liu +5 位作者 Song Zhang Xian-qing Liu Xiao Xu Wei-zhe Ma Shu-kui Li Chuan He 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2022年第8期1362-1368,共7页
A facile and economical approach was developed for the large-scale production of powdered core-shell structured PTFE/Al (CS-PA) energetic materials through ultrasonic-assisted mixing. The low-cost micrometer-sized PTF... A facile and economical approach was developed for the large-scale production of powdered core-shell structured PTFE/Al (CS-PA) energetic materials through ultrasonic-assisted mixing. The low-cost micrometer-sized PTFE and Al particles were used as starting materials. Under high-power ultrasonic waves, the PTFE powder was dispersed into nano-to sub-micrometer-sized particles and then encapsulated the Al microparticles to form the core-shell structure. The heat of combustion, burning rate, and pressurization rate of the powdered CS-PA were measured. The thermal-initiated reaction behavior was further evaluated using thermogravimetry-differential scanning calorimetry. Subsequently, the bulk CS-PA with a uniform microstructure was obtained via cold isostatic pressing of the powdered CS-PA followed by vacuum sintering. For the bulk CS-PA, the quasi-static compression behavior was characterized, and the impact-initiated reaction processes were conducted using the Split Hopkinson Pressure Bar (SHPB) and evaluated by a high-speed camera. Compared to physically mixed PTFE/Al materials, the powdered and bulk CS-PA demonstrated enhanced thermal- and impact-initiated reaction characteristics respectively, proving the effectiveness of our approach for constructing core-shell structures. 展开更多
关键词 PTFE/Al core-shell structure Energetic materials Ultrasonic-assisted mixing
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Preparation of the core-shell HMX@CS microparticles by biological excitation:Excellent hydrophobic-oleophilic properties and decreased impact sensitivity effectively 被引量:2
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作者 Yue-qi Li Heng Zhai +2 位作者 Ping Ye Xing-quan Zhang Chang-ping Guo 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2022年第5期855-861,共7页
Inspired by the phenomenon of superhydrophobic plants and animals in nature,1,3,5,7-tetranitro-1,3,5,7-tetrazocane(HMX)@copper stearate(CS)core-shell composites with similar properties was prepared.A rough shell layer... Inspired by the phenomenon of superhydrophobic plants and animals in nature,1,3,5,7-tetranitro-1,3,5,7-tetrazocane(HMX)@copper stearate(CS)core-shell composites with similar properties was prepared.A rough shell layer on the surface of the HMX was observed by scanning electron microscopy(SEM),and a series of in-depth characterization confirmed the successful generation of CS and the coreshell structure of the samples.Differential scanning calorimeter(DSC)proves that the crystal transition temperature(204℃)and high temperature decomposition exothermal temperature(284℃)of HMX@CS is almost unchanged compared with pure HMX,which means HMX and CS have good compatibility.Then,the H50 of the samples also increased continuously(16.6 cm→33.7 cm)when the CS shell content increased from 1%to 5%,indicating that the CS shell has a certain buffering performance,and CS will absorb some heat and melt under the stimulation of impact due to its low melting point,which improved impact sensitivity of HMX effectively further.Moreover,HMX@CS has excellent hydrophobic and oleophilic performance,shows excellent wettability with lipid binder,and samples with appropriate CS shell content can continue to combustion stably after covering water.This waterproof and low sensitivity coating provides a new way for the development of multifunctional energetic materials. 展开更多
关键词 HMX core-shell Sensitivity Hydrophobic-oleophilic Mechanical properties
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Template synthesis of copper azide primary explosive through Cu2O@HKUST-1 core-shell composite prepared by “bottle around ship” method 被引量:2
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作者 Xu-wen Liu Yan Hu +4 位作者 Jia-heng Hu Jia-xin Su Cai-min Yang Ying-hua Ye Rui-qi Shen 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2023年第7期99-111,共13页
Copper azide(CA), as a primary explosive with high energy density, has not been practically used so far because of its high electrostatic sensitivity. The Cu2O@HKUST-1 core-shell structure hybrid material was synthesi... Copper azide(CA), as a primary explosive with high energy density, has not been practically used so far because of its high electrostatic sensitivity. The Cu2O@HKUST-1 core-shell structure hybrid material was synthesized by the “bottle around ship” methodology in this research by regulating the dissolution rate of Cu2O and the generation rate of metal-organic framework(MOF) materials. Cu2O@HKUST-1 was carbonized to form a Cu O@porous carbon(CuO@PC) composite material. CuO@PC was synthesized into a copper azide(CA) @PC composite energetic material through a gas-solid phase in-situ azidation reaction.CA is encapsulated in PC framework, which acts as a nanoscale Faraday cage, and its excellent electrical conductivity prevents electrostatic charges from accumulating on the energetic material’s surface. The CA@PC composite energetic material has a CA content of 89.6%, and its electrostatic safety is nearly 30times that of pure CA(1.47 mJ compared to 0.05 mJ). CA@PC delivers an outstanding balance of safety and energy density compared to similar materials. 展开更多
关键词 Composite energetic materials Copper azide CARBONIZATION Template method core-shell composite Electrostatic safety
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Immobilization of metalloporphyrins on CeO_2@SiO_2 with a core-shell structure prepared via microemulsion method for catalytic oxidation of ethylbenzene 被引量:1
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作者 沈丹华 吉琳韬 +4 位作者 付玲玲 董旭龙 刘志刚 刘强 刘世明 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第3期862-867,共6页
Ce O2@Si O2 core-shell nanoparticles were prepared by microemulsion method, and metalloporphyrins were immobilized on the Ce O2@Si O2 core-shell nanoparticles surface via amide bond. The supported metalloporphyrin cat... Ce O2@Si O2 core-shell nanoparticles were prepared by microemulsion method, and metalloporphyrins were immobilized on the Ce O2@Si O2 core-shell nanoparticles surface via amide bond. The supported metalloporphyrin catalysts were characterized by N2 adsorption-desorption isotherm(BET), scanning electron microscopy(SEM), transmission electron microscopy(TEM), X-ray diffraction(XRD), ultraviolet and visible spectroscopy(UV-Vis), and Fourier transform infrared spectroscopy(FT-IR). The results show that the morphology of Ce O2@Si O2 nanoparticles is core-shell microspheres with about 30 nm in diameter, and metalloporphyrins are immobilized on the Ce O2@Si O2 core-shell nanoparticles via amide bond. Especially, the core-shell structure contains multi Ce O2 core and thin Si O2 shell, which may benefit the synergistic effect between the Ce O2 core and the porphyrin anchored on the very thin Si O2 shell. As a result, this supported metalloporphyrin catalysts present comparably high catalytic activity and stability for oxidation of ethylbenzene with molecular oxygen, namely, ethylbenzene conversion remains around 12% with identical selectivity of about 80% for acetophenone even after six-times reuse of the catalyst. 展开更多
关键词 Ce O2@Si O2 core-shell structure metalloporphyrin ethylbenzene oxidation
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MnHCF/MnO_2 Core-shell Nanostructures as Cathode Material for Supercapacitors with High Energy Density
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作者 WANG Yu ZHONG Hao +2 位作者 YAN Nan HU Haibo CHEN Qianwang 《矿物学报》 CAS CSCD 北大核心 2013年第S1期104-104,共1页
A nanocomposite of manganese dioxide coated manganese hexacyanoferrate was synthesized by a facile co-precipitation method and tested as active electrode material for an electrochemical supercapacitor. A way called &q... A nanocomposite of manganese dioxide coated manganese hexacyanoferrate was synthesized by a facile co-precipitation method and tested as active electrode material for an electrochemical supercapacitor. A way called "Deep electro-oxidation" was used to generate manganese dioxide coated layer for stabilizing the electrode material. The structure and ingredient of the resulting MnHCF/MnO2 composites were characterized by scanning electron microscopy, transmission electron microscopy, X-ray diffraction, and X-ray Photoelectron Spectroscopy. Electrochemical testing showed a capacitance of 225.6 F/g at a sweep rate of 5 mV/s within a voltage range of 1.3 V, and high energy density of 37.2 Wh/kg at a current density of 0.5 A/g in galvanostatic charge/discharge cycling. It is suggested that the two different components, manganese hexacyanoferrate core and manganese dioxide shell, lead to an integrated electrochemical behavior, and an enhanced capacitor. The electrochemical testing and corresponding XPS analysis also demonstrated that the manganese coordinated by cyanide groups via nitrogen atoms in MnHCF did not get involved in the charge storage process during potential cycles. 展开更多
关键词 SUPERCAPACITORS deep electro-oxidation manganese HEXACYANOFERRATE core-shell NANOSTRUCTURES
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负载二氢杨梅素的玉米醇溶蛋白-阿拉伯胶纳米粒子的制备及分析 被引量:1
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作者 常大伟 曹佳怡 +4 位作者 任娜 王虎玄 孙玉姣 沈文 SARA Sendi 《食品工业科技》 北大核心 2025年第12期30-40,共11页
本研究将二氢杨梅素(Dihydromyricetin,DMY)作为核心来构建纳米粒子,并借助纳米粒子对DMY予以包封,旨在解决其水溶性差以及稳定性欠佳的难题,从而提高其利用率与生物活性。采用反溶剂沉淀法,以DMY为芯材,以玉米醇溶蛋白(Zein)为载体,构... 本研究将二氢杨梅素(Dihydromyricetin,DMY)作为核心来构建纳米粒子,并借助纳米粒子对DMY予以包封,旨在解决其水溶性差以及稳定性欠佳的难题,从而提高其利用率与生物活性。采用反溶剂沉淀法,以DMY为芯材,以玉米醇溶蛋白(Zein)为载体,构建Zein-阿拉伯胶(GA)纳米营养递送体系,以粒径、多分散指数(PDI)、zeta电位、包封率为指标优化了Zein/GA-DMY纳米粒子的制备条件。同时,采用傅里叶红外光谱(FT-IR)和X射线衍射(XRD)探讨了Zein、GA和DMY之间的相互作用,利用扫描电子显微镜(SEM)观察了该体系的微观形貌。结果表明,当Zein与阿拉伯胶的质量比为1:2,Zein与DMY质量比为10:1时,制备的纳米粒子粒径较小(191.04 nm),PDI为0.164,zeta电位为-17.70 mV,包封率为76.17%。氢键、静电和疏水相互作用是使该纳米粒子形成的主要驱动力,DMY以非晶体状态成功包埋在Zein/GA-DMY纳米粒子中,复合物呈球形,且分布均匀。GA的包覆使纳米粒子在一定条件下具备pH、加热、盐离子及储藏稳定性,扩展了其应用范围;体外抗氧化和模拟胃肠道消化实验表明经复合纳米粒子包封后DMY仍具备较强的抗氧化活性,同时呈现缓释特性。因此,本研究可为DMY在功能性食品领域的应用提供一定的理论基础。 展开更多
关键词 二氢杨梅素 玉米醇溶蛋白 阿拉伯胶 纳米粒子 稳定性 生物利用度 壳-核结构
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基于同轴静电纺丝的核壳相变纤维膜制备及性能 被引量:1
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作者 李伟 王旭 +1 位作者 张轶督 刘艳萍 《工程塑料应用》 北大核心 2025年第6期72-78,共7页
相变储能材料(PCM)基于良好的潜热存储能力在热管理领域有广阔的应用前景。然而热力学一级相变的固-液转变导致的泄漏和形状不稳定问题严重阻碍了PCM的应用。采用同轴静电纺丝技术,分别以聚羟基丁酸酯和聚乙二醇(PEG)作为壳层和芯层材料... 相变储能材料(PCM)基于良好的潜热存储能力在热管理领域有广阔的应用前景。然而热力学一级相变的固-液转变导致的泄漏和形状不稳定问题严重阻碍了PCM的应用。采用同轴静电纺丝技术,分别以聚羟基丁酸酯和聚乙二醇(PEG)作为壳层和芯层材料,成功制备了具有核壳结构的相变纤维膜。测试与表征了不同PEG含量下纤维膜的形貌和结构、热性能、热管理性能及力学性能。结果表明,纤维膜呈现均匀的连续结构,纤维表面连续光滑无缺陷,核壳界面清晰;随PEG含量增加,纤维膜的熔点和结晶温度提升,相变焓值增大,拉伸强度降低,断裂伸长率升高,在热对流试验的升降温过程中达到相同温度的时间均变长,表明纤维膜具有较好的保温隔热效果;当PEG质量分数为50%时,纤维膜熔融焓达到57.93 J/g,储热能力优异,在20次热循环后仍保持稳定的相变储热性能,泄漏率约为6.1%,包覆效果良好。制备的核壳相变纤维膜兼具高储热能力、形状稳定性和循环耐久性,在医学热疗、电子器件热防护、智能纺织品等领域具有广阔应用前景。 展开更多
关键词 同轴静电纺丝 聚羟基丁酸酯 聚乙二醇 相变纤维膜 核壳结构 热性能
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三氧化钨/聚(3,4-乙烯二氧噻吩)核壳纳米线阵列薄膜的制备与电致变色性能 被引量:1
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作者 陈传胜 李熙瑞 张青 《化学研究与应用》 北大核心 2025年第2期401-409,共9页
本文采用溶剂热和电沉积相结合的方法制备了三氧化钨/聚(3,4-乙烯二氧噻吩)(WO_(3)/PEDOT)核壳纳米线阵列薄膜,对实验样品进行表面结构表征、电化学性能测试和电致变色性能测试。测试显示WO_(3)/PEDOT纳米线阵列直径约为15-55 nm。透射... 本文采用溶剂热和电沉积相结合的方法制备了三氧化钨/聚(3,4-乙烯二氧噻吩)(WO_(3)/PEDOT)核壳纳米线阵列薄膜,对实验样品进行表面结构表征、电化学性能测试和电致变色性能测试。测试显示WO_(3)/PEDOT纳米线阵列直径约为15-55 nm。透射电子显微镜表征结果证实WO_(3)/PEDOT纳米线阵列薄膜为核壳结构,X射线衍射花样和拉曼光谱证明核壳结构为六方相的WO_(3)核与非晶PEDOT薄壳层所组成。循环伏安曲线显示WO_(3)/PEDOT纳米线的电化学反应为扩散控制过程。WO_(3)/PEDOT纳米线在波长为633 nm处获得了对比度为78.2%、着色时间为4.6 s、褪色时间为2.0 s以及着色效率为78.6 cm^(2)/C的优异特性,由于核与壳层结构之间的协同作用,使得复合结构的变色响应速度和循环稳定性获得了显著的提升,在智能显示、节能窗等领域具有潜在的应用前景。 展开更多
关键词 三氧化钨 聚(3 4-乙烯二氧噻吩) 核壳纳米结构 溶剂热 电致变色
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碳包覆CeO_(2)-Co_(3)O_(4)复合材料制备及其亚甲基蓝降解效能的研究与优化
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作者 孟庆男 梁香灵 +2 位作者 田娜 汤玉斐 赵康 《实验技术与管理》 北大核心 2025年第6期90-97,共8页
围绕污水处理领域的前沿技术,设计了碳包覆CeO_(2)-Co_(3)O_(4)复合材料制备及其催化性能优化综合实验。实验融合了溶剂热反应、溶胶凝胶反应和模板法,制备出具有“核壳”及“摇铃”结构的复合材料;借助XRD、TEM、SEM、FTIR、N_(2)吸附... 围绕污水处理领域的前沿技术,设计了碳包覆CeO_(2)-Co_(3)O_(4)复合材料制备及其催化性能优化综合实验。实验融合了溶剂热反应、溶胶凝胶反应和模板法,制备出具有“核壳”及“摇铃”结构的复合材料;借助XRD、TEM、SEM、FTIR、N_(2)吸附-解吸附测试等表征手段剖析了材料的结构特性。研究了材料催化活化过一硫酸盐(PMS)降解亚甲基蓝(MB)的性能;建立了材料结构与性能间的联系,并基于最优材料,提出了其催化机制。该实验训练了学生对化学及材料学科知识的理解和综合运用能力,有助于培养他们的实践能力、自主创新意识和科学思维能力。 展开更多
关键词 CeO_(2)-Co_(3)O_(4) 核壳及摇铃结构 亚甲基蓝 PMS活化 实验设计
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高熔体流动速率、高抗冲聚丙烯产品性能分析及优化
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作者 刘洋 李慧 张悦 《塑料》 北大核心 2025年第3期55-60,共6页
高流动、高抗冲共聚聚丙烯具有较好的加工性能和力学性能,结合近期开发的高流动、高抗冲共聚聚丙烯新产品(熔体流动速率≥50 g/10 min,23℃下,简支梁缺口冲击强度≥25 kJ/m^(2))的性能和结构进行了分析及优化。结果表明,实际加工应用过... 高流动、高抗冲共聚聚丙烯具有较好的加工性能和力学性能,结合近期开发的高流动、高抗冲共聚聚丙烯新产品(熔体流动速率≥50 g/10 min,23℃下,简支梁缺口冲击强度≥25 kJ/m^(2))的性能和结构进行了分析及优化。结果表明,实际加工应用过程中,该产品中黏度相对较低的乙丙橡胶相结构使其中的橡胶相易发生剪切变形、融合甚至破裂,因此,产品的冲击强度及稳定性波动较大,无法满足实际的使用需求。为解决该问题,通过在体系中添加适量高密度聚乙烯,对产品性能进行了优化。聚乙烯的加入能有效地改善该抗冲聚丙烯橡胶分散相的形态及与连续相基底树脂的相互作用,提高应力在两者之间的有效传递和耗散,最终实现改善产品的抗冲击强度及稳定性的目的。其中,当高密度聚乙烯的添加量为1%~10%时,10根样条的室温简支梁缺口冲击强度较稳定,均值可达到53.31~60.96 kJ/m^(2)。 展开更多
关键词 聚丙烯 “核-壳”结构 橡胶相 乙丙共聚物 高密度聚乙烯
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ZnO压敏电阻改性研究最新进展
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作者 何俊佳 宋丽 +3 位作者 叶芝 周本正 姚澄锋 毛思博 《高电压技术》 北大核心 2025年第8期4110-4129,共20页
ZnO压敏电阻的非线性伏安特性源于晶界势垒结构,相关改性研究长期聚焦于配方优化、制备工艺改进、导电机理探索等方面。随着“双碳”目标的推进以及特高压输电、海上风电等新能源工程的建设,电力系统对过电压防护水平及设备轻量化需求... ZnO压敏电阻的非线性伏安特性源于晶界势垒结构,相关改性研究长期聚焦于配方优化、制备工艺改进、导电机理探索等方面。随着“双碳”目标的推进以及特高压输电、海上风电等新能源工程的建设,电力系统对过电压防护水平及设备轻量化需求显著提高,为ZnO压敏电阻的改性研究带来了新的机遇和挑战。当前,ZnO压敏电阻的改性主要围绕两条技术路线展开:一是基于机械混粉的传统工艺优化,但受限于添加剂分散性差和晶界缺陷调控难度大,性能提升逐渐趋缓;二是基于包覆技术的新型粉体设计,通过表面功能层构建显著改善添加剂分散性和界面特性,为突破传统工艺局限提供了新的路径。该文系统梳理了机械混粉工艺的最新研究成果,总结了当前研究的重点方向;同时综述了包覆技术在提升ZnO压敏电阻性能方面取得的最新探索成果,展望了未来的发展方向,旨在为高性能ZnO压敏电阻的开发提供理论支持和技术指导。 展开更多
关键词 ZNO压敏电阻 机械混粉 表面包覆 核壳结构合成 核壳结构烧结
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惰性壳层介电效应对核壳结构上转换纳米晶发光性能的影响
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作者 王进 于世杰 +1 位作者 胡焱清 邵起越 《发光学报》 北大核心 2025年第9期1639-1648,共10页
采用共沉淀法和逐层包壳法,制备了以β-NaYF_(4)∶Yb^(3+)/A^(3+)(A=Er,Ho,Tm)为核,分别以NaLuF_(4)、NaYF_(4)、NaGdF_(4)为惰性壳层的多种核壳结构上转换纳米晶。利用上转换发射光谱、发光寿命等测试手段研究了惰性壳层组分对核壳结... 采用共沉淀法和逐层包壳法,制备了以β-NaYF_(4)∶Yb^(3+)/A^(3+)(A=Er,Ho,Tm)为核,分别以NaLuF_(4)、NaYF_(4)、NaGdF_(4)为惰性壳层的多种核壳结构上转换纳米晶。利用上转换发射光谱、发光寿命等测试手段研究了惰性壳层组分对核壳结构上转换纳米晶发光性能的影响规律和机制。实验结果表明,核壳结构纳米晶的上转换发光强度及Yb^(3+)发光寿命随惰性壳层呈现如下递减趋势:NaLuF_(4)>NaYF_(4)>NaGdF_(4),即三种惰性壳层对表面猝灭作用的抑制能力依次减弱;这种差异在高猝灭倾向的水性分散环境中更为显著。理论计算表明,不同壳层材料的介电常数差异可能是性能差异的关键因素,其中NaLuF_(4)相对介电常数最低,有效降低了核内活性离子与表面吸附基团的电偶极矩相互作用,抑制了非辐射能量损失。本研究揭示了惰性壳层介电特性对表面猝灭效应可能的影响,可为高亮度上转换纳米晶核壳组成设计提供指导。 展开更多
关键词 核壳结构纳米晶 上转换发光 惰性壳层 介电常数
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双金属掺杂多孔碳正极材料的合成与电化学性能
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作者 曹翔宇 张嘉盈 +3 位作者 丰赟 申林坤 张秀玲 闫娟枝 《无机化学学报》 北大核心 2025年第3期509-520,共12页
利用水热反应制备了葡萄糖缩聚物包覆铁氰化钴晶体的复合前驱体,经过碳化、酸刻蚀和硫负载,最终获得一种双金属(Co、Fe)及氮掺杂的多孔碳/硫复合材料(e-CF@NPC/S,其中CF表示CoFe合金,NPC表示氮掺杂的多孔碳)。进而通过改变形成核壳的原... 利用水热反应制备了葡萄糖缩聚物包覆铁氰化钴晶体的复合前驱体,经过碳化、酸刻蚀和硫负载,最终获得一种双金属(Co、Fe)及氮掺杂的多孔碳/硫复合材料(e-CF@NPC/S,其中CF表示CoFe合金,NPC表示氮掺杂的多孔碳)。进而通过改变形成核壳的原料比例获得系列样品,研究其作为锂硫电池正极的电化学性能。结果表明:该材料的核壳结构提供了充足的空间应对电池反应过程中的活性物质负载及体积变化,碳外壳的空间位阻同时起到了抑制穿梭效应的积极作用和阻碍离子扩散的负面作用,而合金纳米粒子提供吸附和催化作用的效果取决于其表面活性位点的数量。在多种作用的协同下,e-CF@NPC-3/S表现出优异的综合电化学性能,在0.2C的电流密度下循环100次后能保持996.9 mAh·g^(-1)的可逆比容量和92.35%的容量保持率。在1C的高电流密度下循环300次后,e-CF@NPC-3/S仍具有684.5 mAh·g^(-1)的可逆比容量(循环衰减率为0.049%)。 展开更多
关键词 金属掺杂 锂硫电池 正极材料 复合材料 核壳结构
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Erbium-sensitized Broadband Near-infrared Luminescence in Nanoparticles
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作者 ZHAO Yu HUANG Jinshu +2 位作者 LU Kecen HUANG Mengyue ZHOU Bo 《发光学报》 北大核心 2025年第7期1241-1248,共8页
Broadband near-infrared(NIR)luminescent materials have shown great promise in applications such as optical communication,biomedicine,and optoelectronic devices.However,the current research is focused on phos⁃phors and... Broadband near-infrared(NIR)luminescent materials have shown great promise in applications such as optical communication,biomedicine,and optoelectronic devices.However,the current research is focused on phos⁃phors and glasses,and it is important to develop broadband NIR luminescent nanomaterials.Here,we report an erbi⁃um-sensitized core-shell nanocrystal design for broadband NIR emission.Based on the structural design with suitable dopings of Tm^(3+)and Ho^(3+),the broadband NIR emission covering 1.5-2.1μm region is achieved under 980 nm and 808 nm excitations.Moreover,the emission intensity is further enhanced by introducing Yb^(3+)and Nd^(3+)into the sam⁃ple,respectively,and the energy transfer processes between them are systematically discussed.Our results present a novel approach for developing broadband NIR luminescent materials and devices. 展开更多
关键词 broadband near-infrared luminescence lanthanide ions core-shell structure energy transfer
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