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Chemistry and potential applications of multifunctional polymer nanocomposite coatings:A review
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作者 A.M.FADL 《Journal of Central South University》 2026年第1期1-49,共49页
Polymer nanocomposite coatings(PNCCs)are unprecedented generation of coatings engineered for displaying inexpensive and brilliant functional surface coatings with eminent corrosion guard,mechanical resistance,antimicr... Polymer nanocomposite coatings(PNCCs)are unprecedented generation of coatings engineered for displaying inexpensive and brilliant functional surface coatings with eminent corrosion guard,mechanical resistance,antimicrobial,chemical durability,electrical insulation,and UV aging features.Due to their widely anticipation in petroleum,applications in building,conveyance,aerospace,electronics,automobiles and energy,these multi-functional coatings have a tremendous leverage in human life,all technological and scientific subjects.Numerous applications have been made for multilateral polymers like polyurethane(PU),epoxy(EP),polyaniline(PANI)conductive polymer,polypyrrole(PPy),and etc,on various metallic surfaces especially,carbon steel substrate owing to their excellent resistance properties.Practically,nanomaterials can possess potential in the all-interdisciplinary domains of materials science and engineering,chemical and physical sciences,biological and health sciences.As known,the designed polymer nanocomposite coating paradigm is fundamentally constituted from polymer or resin as a vehicle and inorganic nanofillers(nanoparticles and nanocomposites).Some commercialized and excessively employed nanocontainers in polymer nanocomposite coating formulations,like ZnO,TiO_(2),carbon nanotubes(CNTs),clay,SiO_(2),Al_(2)O_(3),graphene,GO,CeO_(2),ZrO_(2),FeTiO_(3),etc were discussed.The current review covered the chemistry and potential applications of the largest utilized multifunctional polymer nanocomposite coatings such as EP,PU and other considerable PNCCs.Lately,a titanic attention was made for epoxy nanocomposites because of their distinct physicochemical characteristics,which result from the combined qualities of the nanoparticles and polymer material unity.In addition,the author incorporated some of his scientific contributions in this area represented in construction of innovative functional polymer nanocomposites for a variety of uses with high economic,industrial impacts and future orientation.Furthermore,some newly published applications of polymer nanocomposite coatings were incorporated and discussed. 展开更多
关键词 polymer nanocomposite coatings(PNCCs) multifunctional properties corrosion mitigation mechanical resistance chemical durability ANTIMICROBIAL UV aging epoxy(EP) polyurethane(PU) NANOCONTAINERS economic and industrial potentials
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A Comprehensive Review of the Functionalized Integrated Application of Gel Polymer Electrolytes in Electrochromic Devices
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作者 Lei Xu Leipeng Zhang +9 位作者 Dongqi Liu Zichen Ren Wenchao Liu Yike Zhang Yuqiang Wang Jiawu Sun Rui Yang Zekuo Lv Jiupeng Zhao Yao Li 《Nano-Micro Letters》 2026年第4期1-39,共39页
With the global push for energy conservation and the rapid development of low-power,flexible and wearable optical displays,the demand for electrochromic technology has surged.Gel polymer electrolytes(GPEs),a crucial c... With the global push for energy conservation and the rapid development of low-power,flexible and wearable optical displays,the demand for electrochromic technology has surged.Gel polymer electrolytes(GPEs),a crucial component of electrochromic devices(ECDs),show great promise in applications.This is attributed to their efficient ion-transport capabilities,excellent mechanical properties and strong adhesion.All of these characteristics are conducive to enhancing the safety of the devices,streamlining the packaging process,significantly improving the electrochromic performance of ECDs and boosting their commercial application potential.This review provides a comprehensive overview of GPEs for ECDs,focusing on their basic designs,functional modifications and practical applications.Firstly,this review outlines the fundamental design of GPEs for ECDs,encompassing key performance index,classification,gelation mechanism and preparation methods.Building on this foundation,it provides an in-depth discussion of functionalized GPEs developed to enhance device performance or expand functionality,including electrochromic,temperature-responsive,photo-responsive and stretchable self-healing GPE.Furthermore,the integration of GPEs into various ECD applications,including smart windows,displays,energy storage devices and wearable electronic,are summarized to highlight the advantages that the design of GPEs brings to the practical application of ECDs.Finally,based on the summary of GPEs employed for ECDs,the challenges and development expectations in this direction were indicated. 展开更多
关键词 Gel polymer electrolytes Electrochromic devices multifunctional gels polymer designs
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A new multifunctional polymer:Synthesis and characterization of mPEG-b-PAA-grafted chitosan copolymer 被引量:4
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作者 刘承斌 王小见 +2 位作者 刘荣华 吴育林 罗胜联 《Journal of Central South University》 SCIE EI CAS 2010年第5期936-942,共7页
A new multifunctional mPEG-b-PAA-grafted chitosan copolymer possessing amino and carboxyl groups,mPEG-b-PAA-g-CHI(compound 6) ,was designed for a potential application in gene/drug delivery and synthesized by the meth... A new multifunctional mPEG-b-PAA-grafted chitosan copolymer possessing amino and carboxyl groups,mPEG-b-PAA-g-CHI(compound 6) ,was designed for a potential application in gene/drug delivery and synthesized by the methods of reversible addition-fragmentation chain transfer(RAFT) polymerization of acrylic acid(AA) and grafting reaction of a biodegradable chitosan(CHI) derivative.Completion of the reactions and characterization of the resulting compounds were demonstrated by 1 H NMR,FTIR and gel permeation chtomatography(GPC) studies.The results show that the molar ratio of amino groups to carboxyl groups in the copolymer(compound 6) is 0.41-0.59. 展开更多
关键词 CHITOSAN polyacrylic acid (PAA) polyethylene glycol (PEG) multifunction polymer synthesis characterization
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Molecular simulation-guided and physics-informed mechanistic modeling of multifunctional polymers 被引量:3
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作者 Guang Chen Weikang Xian +1 位作者 Qiming Wang Ying Li 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2021年第5期725-745,I0002,共22页
Polymeric materials have a broad range of mechanical and physical properties.They have been widely used in material science,biomedical engineering,chemical engineering,and mechanical engineering.The introduction of ac... Polymeric materials have a broad range of mechanical and physical properties.They have been widely used in material science,biomedical engineering,chemical engineering,and mechanical engineering.The introduction of active elements into the soft matrix of polymers has enabled much more diversified functionalities of polymeric materials,such as self-healing,electroactive,magnetosensitive,pH-responsive,and many others.To further enable applications of these multifunctional polymers,a mechanistic modeling method is required and of great significance,as it can provide links between materials’micro/nano-structures and their macroscopic mechanical behaviors.Towards this goal,molecular simulation plays an important role in understanding the deformation and evolution of polymer networks under external loads and stimuli.These molecular insights provide physical guidance in the formulation of mechanistic-based continuum models for multifunctional polymers.In this perspective,we present a molecular simulation-guided and physics-informed modeling framework for polymeric materials.Firstly,the physical theory for polymer chains and their networks is briefly introduced.It serves as the foundation for mechanistic-models of polymers,linking their chemistry,physics,and mechanics together.Secondly,the deformation of the polymer network is used to derive the strain energy density functions.Thus,the corresponding continuum models can capture the intrinsic deformation mechanisms of polymer networks.We then highlight several representative examples across multiphysics coupling problems to describe in detail for this proposed framework.Last but not least,we discuss potential challenges and opportunities in the modeling of multifunctional polymers for future research directions. 展开更多
关键词 Molecular simulation Multiphysics modeling Multiscale modeling multifunctional polymers Soft Matter
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Polymer Hydrogel Electrolytes for Flexible and Multifunctional Zinc-Ion Batteries and Capacitors 被引量:4
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作者 Rujiao Ma Zhixiao Xu Xiaolei Wang 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2023年第5期86-111,共26页
Flexibility and multifunctionality are now becoming inevitable worldwide tendencies for electronic devices to meet modern life's convenience,efficiency,and quality demand.To that end,developing flexible and wearab... Flexibility and multifunctionality are now becoming inevitable worldwide tendencies for electronic devices to meet modern life's convenience,efficiency,and quality demand.To that end,developing flexible and wearable energy storage devices is a must.Recently,aqueous zinc-ion batteries(ZIBs)and zinc-ion capacitors(ZICs)stand out as two of the most potent candidates for wearable electronics due to their excellent electrochemical performance,intrinsic safety,low cost,and functional controllability.Simultaneously,polymer electrolytes'introduction and rational design,especially various hydrogels,have endowed conventional ZIBs and ZICs with colorful functions,which has been regarded as a perfect answer for energy suppliers integrated into those advanced wearable electronic devices.This review focuses on the functional hydrogel electrolytes(HEs)and their application for ZIBs and ZICs.Previously reported HEs for ZIBs and ZICs were classified and analyzed,from the flexibility to mechanical endurance,temperature adaptability,electrochemical stability,and finally cell-level ZIBs and ZICs based on multifunctional HEs.Besides introducing the diverse and exciting functions of HEs,working principles were also analyzed.Ultimately,all the details of these examples were summarized,and the related challenges,constructive solutions,and futural prospects of functional ZIBs and ZICs were also dedicatedly evaluated. 展开更多
关键词 environmental-adaptive hydrogels flexible zinc-ion batteries multifunctional hydrogels polymer hydrogel electrolytes wearable electronics
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Multifunctional stimuli responsive polymer-gated iron and gold-embedded silica nano golf balls:Nanoshuttles for targeted on-demand theranostics 被引量:1
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作者 Liping Wang Grace Jang +11 位作者 Deependra Kumar Ban Vrinda Sant Jay Seth Sami Kazmi Nirav Patel Qingqing Yang Joon Lee Woraphong Janetanakit Shanshan Wang Brian P Head Gennadi Glinsky Ratneshwar Lai 《Bone Research》 SCIE CAS CSCD 2017年第4期343-356,共14页
Multi-functional nanoshuttles for remotely targeted and on-demand delivery of therapeutic molecules and imaging to defined tissues and organs hold great potentials in personalized medicine, including precise early dia... Multi-functional nanoshuttles for remotely targeted and on-demand delivery of therapeutic molecules and imaging to defined tissues and organs hold great potentials in personalized medicine, including precise early diagnosis, efficient prevention and therapy without toxicity. Yet, in spite of 25 years of research, there are still no such shuttles available. To this end, we have designed magnetic and gold nanoparticles (NP)-embedded silica nanoshuttles (MGNSs) with nanopores on their surface. Fluorescently labeled Doxombicin (DOX), a cancer drug, was loaded in the MGNSs as a payload. DOX loaded MGNSs were encapsulated in heat and pH sensitive polymer P(NIPAM-co- MAA) to enable controlled release of the payload. Magnetically-guided transport of MGNSs was examined in: (a) a glass capillary tube to simulate their delivery via blood vessels; and (b) porous hydrogels to simulate their transport in composite human tissues, including bone, cartilage, tendon, muscles and blood-brain barrier {BBB). The viscoelastic properties of hydrogels were examined by atomic force microscopy (AFM). Cellular uptake of DOX- loaded MGNSs and the subsequent pH and temperature-mediated release were demonstrated in differentiated human neurons derived from induced pluripotent stem cells (iPSCs) as well as epithelial HeLa cells. The presence of embedded iron and gold NPs in silica shells and polymer-coating are supported by SEM and TEM. Fluorescence spectroscopy and microscopy documented DOX loading in the MGNSs. Time-dependent transport of MGNSs guided by an external magnetic field was observed in both glass capillary tubes and in the porous hydrogel. AFM results affirmed that the stiffness of the hydrogels model the rigidity range from soft tissues to bone. pH and temperature-dependent drug release analysis showed stimuli responsive and gradual drug release. Cells' viability MTT assays showed that MGNSs are non-toxic. The cell death from on-demand DOX release was observed in both neurons and epithelial cells even though the drug release efficiency was higher in neurons. Therefore, development of smart nanoshuttles have significant translational potential for controlled delivery of theranostics' payloads and precisely guided transport in specified tissues and organs (for example, bone, cartilage, tendon, bone marrow, heart, lung, liver, kidney, and brain) for highly efficient personalized medicine applications. 展开更多
关键词 multifunctional stimuli responsive polymer-gated iron
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Advances in Organic Porous Polymeric-Supported Photothermal Phase Change Materials 被引量:1
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作者 Fulai Zhao Weikang Yuan +4 位作者 Huiyu Chen Hui Fu Zhen Li Jian Xiao Yiyu Feng 《Carbon Energy》 2025年第6期47-89,共43页
The urgent demand for renewable energy solutions,propelled by the global energy crisis and environmental concerns,has spurred the creation of innovative materials for solar thermal storage.Photothermal phase change ma... The urgent demand for renewable energy solutions,propelled by the global energy crisis and environmental concerns,has spurred the creation of innovative materials for solar thermal storage.Photothermal phase change materials(PTPCMs)represent a novel type of composite phase change material(PCM)aimed at improving thermal storage efficiency by incorporating photothermal materials into traditional PCMs and encapsulating them within porous structures.Various porous encapsulation materials have been studied,including porous carbon,expanded graphite,and ceramics,but issues like brittleness hinder their practical use.To overcome these limitations,flexible PTPCMs using organic porous polymers—like foams,hydrogels,and porous wood—have emerged,offering high porosity and lightweight characteristics.This review examines recent advancements in the preparation of PTPCMs based on porous polymer supports through techniques like impregnation and in situ polymerization,assessing the impact of different porous polymer materials on PCM performance and clarifying the mechanisms of photothermal conversion and heat storage.Subsequently,the most recent advancements in the applications of porous polymer-based PTPCMs are systematically summarized,and future research challenges and possible solutions are discussed.This review aims to foster awareness about the potential of PTPCMs in promoting environmentally friendly energy practices and catalyzing further research in this promising field. 展开更多
关键词 functional composite materials multifunctional application photothermal conversion efficiency photothermal phase change materials porous polymers thermal energy storage
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Black phosphorus nanosheets for advanced polymer coatings and films:Preparation,stability and applications
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作者 Qihan Weng Xiaolin Huang +3 位作者 Ying Chen Li Zhang Delong Xie Xinxin Sheng 《Journal of Materials Science & Technology》 2025年第13期192-208,共17页
The rapid development of industrialization necessitates advancements in nanomaterials.Black phospho-rus(BP)nanosheets have garnered extensive attention due to their highly anisotropic optoelectronic properties,high ca... The rapid development of industrialization necessitates advancements in nanomaterials.Black phospho-rus(BP)nanosheets have garnered extensive attention due to their highly anisotropic optoelectronic properties,high carrier mobility,and excellent mechanical properties.These unique attributes make BP nanosheets advantageous in various research fields.Combining BP nanosheets with polymers results in functional coatings and films with flame retardancy,antibacterial properties,wear resistance,and cor-rosion resistance.In this review,we first introduce various preparation methods for BP nanosheets.We discuss the degradation mechanisms of BP nanosheets and the passivation techniques employed to en-hance their environmental stability.Subsequently,we provide a detailed and comprehensive review of the applications of BP nanosheets in polymer coatings and films.Finally,we outline the development challenges and future research opportunities for BP-based polymer coatings and films.This article aims to summarize existing research and provide objective insights,serving as a constructive reference for the advancement of modern multifunctional polymer coatings and films. 展开更多
关键词 Black phosphorus polymer Coating/film multifunctional
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New strategy for reversal tolerant anode for automotive polymer electrolyte fuel cell 被引量:3
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作者 Chanho Pak Seung Woo Lee +3 位作者 Chaekyung Baik Bong Ho Lee Dae Jong You Eunyoung You 《Chinese Chemical Letters》 SCIE CAS CSCD 2019年第6期1186-1189,共4页
Since the commercialization of the fuel cell electric vehicles (FCEVs), the polymer electrolyte membrane fuel cell system has been actively improved as a powertrain for ultimate environment-friendly vehicle. During th... Since the commercialization of the fuel cell electric vehicles (FCEVs), the polymer electrolyte membrane fuel cell system has been actively improved as a powertrain for ultimate environment-friendly vehicle. During the FCEV operation, various transient conditions such as start-up/shut-down and fuel starvation occur irregularly, which deteriorates the durability of the membrane electrode assembly. In particular, when fuel starvation occurs, the carbon support in the anode is oxidized within few minutes, thus the mitigation of this phenomenon is essential for securing the durability. This short review introduces the concept of reversal tolerant anode (RTA), which is a mitigation method using an oxygen evolution catalyst and reviews some previous reports. In addition, new approach for RTA suggested by authors recently, which is the replacement of Pt anode catalyst by multifunctional IrRu alloy catalyst that simultaneously exhibits the activities for the hydrogen oxidation reaction and the oxygen evolution reaction is introduced. 展开更多
关键词 multifunctional IrRu alloy CATALYST REVERSAL TOLERANT ANODE Hydrogen oxidation REACTION CATALYST Oxygen evolution REACTION CATALYST CELL REVERSAL durability polymer electrolyte membrane fuel CELL
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3D flame-retardant skeleton reinforced polymer electrolyte for solid-state dendrite-free lithium metal batteries 被引量:3
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作者 Xiaojiao Zheng Jiawei Wu +2 位作者 Jing Chen Xiaodong Wang Zhenglong Yang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2022年第8期174-181,I0006,共9页
For solid polymer electrolytes(SPEs),improving their mechanical and electrochemical properties is the key to obtaining batteries with higher safety and higher energy density.Herein,a novel synergistic strategy propose... For solid polymer electrolytes(SPEs),improving their mechanical and electrochemical properties is the key to obtaining batteries with higher safety and higher energy density.Herein,a novel synergistic strategy proposed is preparing a 3D flame-retardant skeleton(3DPA)and adding nano-multifunctional fillers(Li-ILs@ZIF-8).In addition to providing mechanical support for the polyethylene oxide(PEO)matrix,3DPA also has further contributed to the system’s flame retardancy and further improved the safety.Simultaneously,the electrochemical performance is fully guaranteed by rigid Li-ILs@ZIF-8,which provides fast migration channels forLi^(+),reduces the crystallinity of PEO and effectively inhibits lithium dendrites.The limiting oxygen index of the optimal sample(PL3Z/PA)is as high as 20.5%,and the ionic conductivity reaches 2.89×10^(-4) and 0.91×10^(-3) S cm^(-1) at 25 and 55°C,respectively.The assembled Li|PL3Z/PA|Li battery can be cycled stably for more than 1000 h at a current density of 0.1 m A cm^(-2) without short circuit being pierced by lithium dendrites.The specific capacity of the LFP|PL3Z/PA|Li battery was 160.5 m Ah g^(-1) under a current density of 0.5 C,and the capacity retention rate was 90.0%after 300 cycles. 展开更多
关键词 Solid polymer electrolytes Polyethylene oxide 3D flame-retardant skeleton multifunctional fillers Synergistic effect
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Smart aggregation-induced emission polymers:Preparation,properties and bio-applications 被引量:2
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作者 Guiquan Zhang Xinyao Fu +3 位作者 Daming Zhou Rong Hu Anjun Qin Ben Zhong Tang 《Smart Molecules》 2023年第1期37-51,共15页
Owing to the outstanding photophysical properties,organic luminescent materials featuring aggregation-induced emission(AIE)characteristics have attracted wide attention in various fields.Numerous researches focused on... Owing to the outstanding photophysical properties,organic luminescent materials featuring aggregation-induced emission(AIE)characteristics have attracted wide attention in various fields.Numerous researches focused on low-mass AIE luminogens,and relatively less attention has been paid on AIE polymers and the related applications,in spite of the fact that AIE polymers exhibit excellent advantages of processability,multifunctional integration and synergistic effects.In this review,we briefly summarize and discuss the superiorities of AIE polymers in preparation,properties and bio-applications,and the considerable progress in these aspects are introduced as well.Finally,the structure-property relationship,challenges and opportunities are also discussed.Hopefully,this review will be a trigger for smart AIE polymer research and further broaden their applications. 展开更多
关键词 aggregation-induced emission lab-in-cell multifunctional integration smart polymer synergistic amplification
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Synthesis of Multifunctional Polysiloxanes for Photorefractive Effect
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作者 Jun LI Peng REN +1 位作者 Cat Mao ZHAN Jin Gut QIN (Department of Chemistry. Wuhan University. Wuhan 430072) 《Chinese Chemical Letters》 SCIE CAS CSCD 1999年第3期261-262,共2页
A novel kind of multifunctional polysiloxane containing charge-transporting agent and as electro-optical chromophore has been prepared for photorefractive application. The structural characterization of this kind of p... A novel kind of multifunctional polysiloxane containing charge-transporting agent and as electro-optical chromophore has been prepared for photorefractive application. The structural characterization of this kind of polymer is presented by IR spectra and elemental analysis. 展开更多
关键词 PHOTOREFRACTIVE POLYSILOXANE multifunctional polymer SYNTHESIS structure
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Applications and Mechanistic Insights Into Intrinsically Self-Healing Polymers With Multifunctional 2D Materials
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作者 Chirag R.Ratwani Kostya S.Novoselov Amr M.Abdelkader 《SusMat》 2025年第4期1-38,共38页
Self-healing(SH)polymeric composites hold the promise of revolutionizing material performance and durability,but the challenge lies in achieving a delicate balance between healing efficiency and mechanical strength.He... Self-healing(SH)polymeric composites hold the promise of revolutionizing material performance and durability,but the challenge lies in achieving a delicate balance between healing efficiency and mechanical strength.Healing processes typically require dynamic,reversible bonds,which can weaken overall material strength,whereas robust materials rely on strong covalent bonds that resist healing.2D materials offer a solution by acting as nanofillers that not only improve mechanical properties but also introduce multifunctional benefits like electrical and thermal conductivity,responsiveness to stimuli,and enhanced barrier properties.Depending on their surface chemistry,thesematerials can either actively participate in the healing process or passively reinforce the polymer matrix.This review examines recent advancements in SH polymer composites enhanced with 2D fillers,exploring how factors like filler type,surface interactions,and loading levels impact both healing efficiency and mechanical strength.It compares the contributions of various 2D materials,identifying similarities and critical differences in their roles within polymermatrices.The article also highlights the need for standardized testing and advanced characterization techniques to better understand interfacial properties and healing mechanisms.By addressing current knowledge gaps and proposing future research directions,this review provides a comprehensive resource for advancing SH polymer systems,particularly in the integration of 2D materials for applications ranging from aerospace to electronics. 展开更多
关键词 2D materials multifunctional composites polymer nanocomposite self-healing polymers smart materials
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生物炭在多功能涂层改性中的研究进展
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作者 胡慧 陈宇 张亚梅 《材料导报》 北大核心 2026年第5期1-15,共15页
生物炭是一类由生物质热解所得的绿色功能材料,可作为填料或改性组分应用于涂层中。凭借其丰富的原料来源、碳减排潜力、孔隙结构以及活性表面特性,生物炭在提升传统涂层性能方面表现出广阔的前景,契合了当前对环境友好型材料的需求。然... 生物炭是一类由生物质热解所得的绿色功能材料,可作为填料或改性组分应用于涂层中。凭借其丰富的原料来源、碳减排潜力、孔隙结构以及活性表面特性,生物炭在提升传统涂层性能方面表现出广阔的前景,契合了当前对环境友好型材料的需求。然而,该类涂层的产业化应用仍受到若干问题制约,为系统梳理相关研究成果、厘清现存挑战并为未来的材料优化设计与实际应用提供理论技术参考,本文对近年来生物炭改性涂层的研究进展进行综述。首先,回顾了生物炭的原料类型、制备工艺与改性,并与其他碳填料进行比较。随后,分析了影响涂层的生物炭关键特性,讨论了生物炭复合涂层的构筑路径,包括材料选择、复合方法与成型工艺;并结合应用案例,重点分析了生物炭在防冰除冰、耐蚀防护、环境治理、阻燃、电化学储能器件及耐磨等方面的功能表现。最后,针对现有生物炭改性功能涂层研究的不足,提出了未来可能的研究方向与发展思路。 展开更多
关键词 生物炭 改性 聚合物 金属氧化物 多功能涂层
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耐温多功能聚合物增效热水驱油提高海上稠油采收率的作用
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作者 梁丹 张健 +3 位作者 周文胜 华朝 张琪琛 刘振坤 《油田化学》 北大核心 2026年第1期78-89,共12页
针对海上稠油高温热采技术面临的高成本、高风险以及单一热水驱增油效果有限等技术难题,系统评价一种基于自主研发耐温多功能聚合物TMP的增效热水驱油技术,旨在明确其提高采收率的作用机制与现场应用潜力。采用室内实验与数值模拟相结... 针对海上稠油高温热采技术面临的高成本、高风险以及单一热水驱增油效果有限等技术难题,系统评价一种基于自主研发耐温多功能聚合物TMP的增效热水驱油技术,旨在明确其提高采收率的作用机制与现场应用潜力。采用室内实验与数值模拟相结合的研究方法,系统评价了聚合物TMP对水增黏、对油降黏、降低界面张力及拆解沥青质聚集体的能力;利用CMG数值模拟软件,建立了注采井组模型,反演了驱替过程,并研究了油藏静态与动态因素对增油效果的影响。研究结果表明,在温度为80℃、质量浓度为1500 mg/L的条件下聚合物TMP溶液的黏度约80 mPa·s,且具有良好的耐温性;可使油水界面张力降至10^(-1) mN/m数量级;通过拆解沥青质聚集体,在80℃下可使原油降黏率达85%。数值模拟结果表明,聚合物增效热水驱的提高采收率可达6个百分点,显著高于单一热水驱(1个百分点~2个百分点)。聚合物在增油效果中起主导作用,贡献率为80%~90%,热能发挥辅助协同作用,贡献率为10%~20%。该技术的油藏适用条件为:平均渗透率>2000×10^(-3)μm^(2)、地层原油黏度为200~600 mPa·s、水体倍数<4。耐温多功能聚合物增效热水驱技术通过热能与化学能的协同,实现了“近井热能降黏、远井化学降黏”的优势互补,兼具扩大波及体积与提高洗油效率的双重作用。渤海D油田的方案设计表明,该技术可比水驱提高采收率5.9个百分点,为海上稠油经济高效开发提供了一条具有前景的新路径。 展开更多
关键词 海上稠油 提高采收率 耐温多功能聚合物 热水驱 实验研究 数值模拟
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基于聚合物的电驱动软体机器人研究进展 被引量:2
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作者 郭晨瑜 侯国栋 +1 位作者 钱小石 孟光 《航空学报》 北大核心 2025年第15期323-342,共20页
电驱动机器人因其响应速度快,控制精度高,灵活性强等优点,在机器人领域受到了广泛关注。与刚性部件组成的电驱动机器人相比,基于聚合物的电驱动软体机器人具有更高的自由度、适应性和鲁棒性,因此在航空航天等领域具有不可忽视的应用潜... 电驱动机器人因其响应速度快,控制精度高,灵活性强等优点,在机器人领域受到了广泛关注。与刚性部件组成的电驱动机器人相比,基于聚合物的电驱动软体机器人具有更高的自由度、适应性和鲁棒性,因此在航空航天等领域具有不可忽视的应用潜力。然而,当前基于聚合物的电驱动软体机器人使用的电响应智能驱动材料仍面临能量效率低,驱动精度不足,稳定性差等问题;在器件方面,还存在作动方式简单,应用场景有限及缺乏复杂场景下的多模态运动能力等挑战。因此,首先从材料的角度总结了不同类型的基于聚合物的电驱动软体机器人的驱动机制,并综述了其驱动性能改进方法;然后从器件角度,总结了基于聚合物的电驱动软体机器人在复杂环境下的运动行为特点,包含爬行和行走、跳跃、攀爬、水下运动和飞行等多种模式,以及驱动功能和多物理场耦合以拓宽软体驱动的应用场景;最后讨论了当前研究所面对的挑战与未来发展趋势。 展开更多
关键词 电驱动 聚合物 软体机器人 多功能材料 柔性机构
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FRP在战术导弹中的应用及发展现状 被引量:1
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作者 李会民 季元 《战术导弹技术》 北大核心 2025年第4期27-38,89,共13页
纤维增强树脂基复合材料(Fiber Reinforced Polymer/Plastic,FRP)凭借其高比强度/比模量、力学性能可设计性及多功能特性,已经成为战术导弹轻量化、高性能化发展的核心材料之一。综述了FRP在国内外战术导弹承力结构、气动与舵面耐热结... 纤维增强树脂基复合材料(Fiber Reinforced Polymer/Plastic,FRP)凭借其高比强度/比模量、力学性能可设计性及多功能特性,已经成为战术导弹轻量化、高性能化发展的核心材料之一。综述了FRP在国内外战术导弹承力结构、气动与舵面耐热结构、透波与隐身结构中的典型应用,总结了高性能材料体系开发、结构轻量化设计、高质量成型工艺与多物理场耦合仿真等关键技术研究现状,据此归纳出FRP在战术导弹上应用所面临的三大挑战,以及多功能集成与结构-功能一体化、智能制造与精准成型、多物理场耦合仿真与性能优化的发展趋势,研究成果可为新一代战术导弹实现轻量化、长航时、高突防性能提供理论支撑与技术路径参考。 展开更多
关键词 纤维增强树脂基复合材料 战术导弹 结构轻量化 多功能结构 耐热结构 隐身结构 透波结构 复合材料成型工艺 多物理场耦合仿真
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Magnetic/fluorescent multi-functional PGMA@Fe_(3)O_(4)@SiO_(2)@SiO_(2)-Eu microspheres:A strategy of partitioning europium complex and Fe_(3)O_(4)nanoparticles
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作者 Tianhao Xia Yuwen Yuan +6 位作者 Yunpeng Wang Pragati Awasthi Wenkun Dong Xusheng Qiao Dong Chen Shisheng Ling Xianping Fan 《Journal of Rare Earths》 2025年第12期2722-2731,I0005,共11页
This study aims to advance the development of magnetic fluorescent polymer microspheres for biomedical detection applications.Conventionally,dopants have utilized europium(Ⅲ)(Eu(Ⅲ))organic complexes due to their hig... This study aims to advance the development of magnetic fluorescent polymer microspheres for biomedical detection applications.Conventionally,dopants have utilized europium(Ⅲ)(Eu(Ⅲ))organic complexes due to their high compatibility with polymers and strong fluorescence.However,as the common magnetic material Fe_(3)O_(4)can quench their fluorescence,it is hard to synthesize Eu complexdoped magnetic fluorescent materials.To maintain fluorescence in the presence of magnetic parts,in this work,we synthesized Eu-doped magnetic microspheres with multi-layered structure.Firstly,poly-(glycidyl methacrylate)(PGMA)microspheres were prepared as templates and subsequently coated with layers of Fe_(3)O_(4)and SiO_(2).Then,the synthesized Eu(TTA)_(3)(TPPO)_(2)were added into PGMA@Fe_(3)O_(4)@SiO_(2)microspheres in either basic or acidic conditions,and covered them with an extra sol-gel layer of silica at the same time.The microspheres exhibit a core-shell structure with sub-micron dimensions(580 nm)and possess favorable superparamagnetic properties(M_(s)=22.02 A·m^(2)/kg,Mr=1.37 A·m^(2)/kg,H_(c)=0.242 A/m).But the fluorescence of Eu^(3+)are significantly quenched by Fe_(3)O_(4),O-H oscillators,and N-H oscillators.Finally,to exclude the quenching mentioned above,the first pure SiO_(2)shielding layer and the second Eu(TTA)_(3)(TPPO)_(2)-dispersed SiO_(2)layer were coated onto PGMA@Fe_(3)O_(4)microspheres to prevent the energy transfer due to the quenching centers and hold the fluorescence of Eu^(3+).These findings underscore the considerable potential of these microspheres exhibiting rapid magnetic separation and stable fluorescence for bioimaging and biosensing applications. 展开更多
关键词 Magnetic fluorescent microspheres Rare earths Eu complex Core—shell structure polymer compatibility multifunctional nanoparticles
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形状记忆聚合物及其应用前景 被引量:15
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作者 赵建宝 吴雪莲 +2 位作者 戈晓岚 郭玉琴 牛帅旗 《材料导报》 EI CAS CSCD 北大核心 2015年第21期75-80,共6页
介绍了形状记忆聚合物的形状记忆效应机理,对其不同驱动方式进行比较和评价,并且系统介绍了形状记忆聚合物在航天航空、生物医疗、纺织、温度指示、防伪指示以及微流体混合器等工程领域的应用。针对形状记忆聚合物目前开发和应用的大趋... 介绍了形状记忆聚合物的形状记忆效应机理,对其不同驱动方式进行比较和评价,并且系统介绍了形状记忆聚合物在航天航空、生物医疗、纺织、温度指示、防伪指示以及微流体混合器等工程领域的应用。针对形状记忆聚合物目前开发和应用的大趋势,分析了形状记忆聚合物的多功能化研究现状,通过比较本征型和复合型导电形状记忆聚合物,说明了本征型导电形状记忆聚合物材料的优越特性和广阔的应用前景。 展开更多
关键词 形状记忆聚合物 形状记忆效应 多功能化 导电
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结构电池的研究现况 被引量:6
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作者 胡芸 谢凯 +1 位作者 盘毅 洪晓斌 《电源技术》 CAS CSCD 北大核心 2008年第12期889-891,共3页
航空航天技术的迅速发展对相应电源技术的要求不断提高,传统电池(如氢镍和镉镍电池)的性能越来越难以满足需要。结构电池将电池与结构件合二为一,可有效降低系统质量,提高电池的有效容量,节约有效载荷空间等优点,将取代传统电池,成为航... 航空航天技术的迅速发展对相应电源技术的要求不断提高,传统电池(如氢镍和镉镍电池)的性能越来越难以满足需要。结构电池将电池与结构件合二为一,可有效降低系统质量,提高电池的有效容量,节约有效载荷空间等优点,将取代传统电池,成为航空航天用高性能电池新型应用形式。 展开更多
关键词 结构电池 聚合物锂离子电池 多功能电池
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