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高储能密度全有机复合薄膜介质材料的研究 被引量:8
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作者 苑金凯 党智敏 《绝缘材料》 CAS 2008年第5期1-4,22,共5页
电容器储能以其轻便、高效、环保等特点正在逐步引起人们的重视。为制备高储能密度的电容器介质材料,研究以聚偏氟乙烯(PVDF)为基体,以纳米尺度的导电聚苯胺(PANI)为填料,采用溶液法及后续的球磨工艺制备了高储能密度的全有机复... 电容器储能以其轻便、高效、环保等特点正在逐步引起人们的重视。为制备高储能密度的电容器介质材料,研究以聚偏氟乙烯(PVDF)为基体,以纳米尺度的导电聚苯胺(PANI)为填料,采用溶液法及后续的球磨工艺制备了高储能密度的全有机复合薄膜介质材料。研究了添加物含量、频率等因素对复合介质材料介电性能的影响。发现当PANI体积分数达到0.05时(略高于渗流阈值fc=0.041),复合薄膜的介电常数在100Hz条件下高达456,击穿场强为60MV/m,储能密度达到了7.2J/cm^3,与PVDF基体相比提高了3倍多。另外还发现即使在渗流阈值附近,复合薄膜介电性能仍具有一定的频率稳定性。介电常数在低频范围(10^2~10^4 Hz)内基本保持不变。利用SEM对复合薄膜的表面形貌进行了分析,发现有机填料PANI粒子在PVDF基体内有很好的分散性。另外利用XRD分析了复合薄膜的晶体结构,发现该制备工艺条件下所得复合材料基体主要以β-PVDF形式存在,这有助于发挥PVDF基体的功能性。渗流阈值理论可用来解释介电常数随添加物含量和频率的变化规律。研究结果表明,该制备工艺可得到适用于较宽频率范围的高储能密度复合薄膜。 展开更多
关键词 高介电 储能密度 全有机 复合薄膜 导电聚苯胺
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全有机聚酰亚胺复合电介质薄膜储能特性的研究进展 被引量:5
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作者 查俊伟 肖梦雨 +1 位作者 万宝全 郑明胜 《绝缘材料》 CAS 北大核心 2023年第2期1-10,共10页
聚酰亚胺(PI)因其优异的性能在新型高温储能电介质材料领域得到广泛关注。与无机/PI复合电介质材料相比,全有机PI复合电介质材料可以在获得高介电常数和高储能密度的同时保持优异的力学性能。本文首先讨论了影响聚合物电介质材料储能特... 聚酰亚胺(PI)因其优异的性能在新型高温储能电介质材料领域得到广泛关注。与无机/PI复合电介质材料相比,全有机PI复合电介质材料可以在获得高介电常数和高储能密度的同时保持优异的力学性能。本文首先讨论了影响聚合物电介质材料储能特性的关键参数,包括介电常数、介质损耗、击穿场强、储能密度、充放电效率和耐热性,然后分别从物理共混和化学共混两个角度分类介绍了影响全有机PI复合电介质材料储能特性的关键因素及发展动态,最后,对如何有效提升全有机PI复合电介质材料的高温储能特性问题进行了总结,并对其未来发展方向进行了展望。 展开更多
关键词 全有机 复合电介质 聚酰亚胺 薄膜 储能特性
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Enhanced High-Temperature Energy Storage Performance of All-Organic Composite Dielectric via Constructing Fiber-Re in forced Structure 被引量:1
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作者 Mengjia Feng Yu Feng +5 位作者 Changhai Zhang Tiandong Zhang Xu Tong Qiang Gao Qingguo Chen Qingguo Chi 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2024年第2期299-307,共9页
Optimizing the high-temperature energy storage characteristics of energy storage dielectrics is of great significance for the development of pulsed power devices and power control systems.Selecting a polymer with a hi... Optimizing the high-temperature energy storage characteristics of energy storage dielectrics is of great significance for the development of pulsed power devices and power control systems.Selecting a polymer with a higher glass transition temperature(T_(g))as the matrix is one of the effective ways to increase the upper limit of the polymer operating temperature.However,current high-T_(g)polymers have limitations,and it is difficult to meet the demand for high-temperature energy storage dielectrics with only one polymer.For example,polyetherimide has high-energy storage efficiency,but low breakdown strength at high temperatures.Polyimide has high corona resistance,but low high-temperature energy storage efficiency.In this work,combining the advantages of two polymer,a novel high-T_(g)polymer fiber-reinforced microstructure is designed.Polyimide is designed as extremely fine fibers distributed in the composite dielectric,which will facilitate the reduction of high-temperature conductivity loss for polyimide.At the same time,due to the high-temperature resistance and corona resistance of polyimide,the high-temperature breakdown strength of the composite dielectric is enhanced.After the polyimide content with the best high-temperature energy storage characteristics is determined,molecular semiconductors(ITIC)are blended into the polyimide fibers to further improve the high-temperature efficiency.Ultimately,excellent high-temperature energy storage properties are obtained.The 0.25 vol%ITIC-polyimide/polyetherimide composite exhibits high-energy density and high discharge efficiency at 150℃(2.9 J cm^(-3),90%)and 180℃(2.16 J cm^(-3),90%).This work provides a scalable design idea for high-performance all-organic high-temperature energy storage dielectrics. 展开更多
关键词 all-organic energy storage density high-temperature high-temperature breakdown strength
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Ultraviolet‑Irradiated All‑Organic Nanocomposites with Polymer Dots for High‑Temperature Capacitive Energy Storage 被引量:1
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作者 Jiale Ding Yao Zhou +5 位作者 Wenhan Xu Fan Yang Danying Zhao Yunhe Zhang Zhenhua Jiang Qing Wang 《Nano-Micro Letters》 SCIE EI CSCD 2024年第3期398-406,共9页
Polymer dielectrics capable of operating efficiently at high electric fields and elevated temperatures are urgently demanded by next-generation electronics and electrical power systems.While inorganic fillers have bee... Polymer dielectrics capable of operating efficiently at high electric fields and elevated temperatures are urgently demanded by next-generation electronics and electrical power systems.While inorganic fillers have been extensively utilized to improved high-temperature capacitive performance of dielectric polymers,the presence of thermodynamically incompatible organic and inorganic components may lead to concern about the long-term stability and also complicate film processing.Herein,zero-dimensional polymer dots with high electron affinity are introduced into photoactive allyl-containing poly(aryl ether sulfone)to form the all-organic polymer composites for hightemperature capacitive energy storage.Upon ultraviolet irradiation,the crosslinked polymer composites with polymer dots are efficient in suppressing electrical conduction at high electric fields and elevated temperatures,which significantly reduces the high-field energy loss of the composites at 200℃.Accordingly,the ultraviolet-irradiated composite film exhibits a discharged energy density of 4.2 J cm^(−3)at 200℃.Along with outstanding cyclic stability of capacitive performance at 200℃,this work provides a promising class of dielectric materials for robust high-performance all-organic dielectric nanocomposites. 展开更多
关键词 High-temperature energy storage Polymer dots Ultraviolet irradiation all-organic composite dielectrics
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Construction of all-organic low dielectric polyimide hybrids via synergistic effect between covalent organic framework and cross-linking structure 被引量:3
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作者 Wanjing Zhao Zhaoyang Wei +6 位作者 Chonghao Lu Yizhang Tong Jingshu Huang Xianwu Cao Dean Shi Robert KYLi Wei Wu 《Nano Materials Science》 EI CAS CSCD 2023年第4期429-438,共10页
Polyimide(PI)is a promising electronic packaging material,but it remains challenging to obtain an all-organic PI hybrid film with decreased dielectric constant and loss without modifying the monomer.Herein,a series of... Polyimide(PI)is a promising electronic packaging material,but it remains challenging to obtain an all-organic PI hybrid film with decreased dielectric constant and loss without modifying the monomer.Herein,a series of allorganic PI hybrid films were successfully prepared by introducing the covalent organic framework(COF),which could induce the formation of the cross-linking structure in the PI matrix.Due to the synergistic effects of the COF fillers and the cross-linking structure,the PI/COF hybrid film containing 2 wt%COF exhibited the lowest dielectric constant of 2.72 and the lowest dielectric loss(tanδ)of 0.0077 at 1 MHz.It is attributed to the intrinsic low dielectric constant of COF and a large number of mesopores within the PI.Besides,the cross-linking network of PI prevents the molecular chains from stacking and improves the fraction of free volume(FFV).The molecular dynamics simulation results are well consistent with the dielectric properties data.Furthermore,the PI/COF hybrid film with 5 wt%COF showed a significant enhancement in breakdown strength,which increased to 412.8 kV/mm as compared with pure PI.In addition,the PI/COF hybrid film achieve to reduce the dielectric constant and thermal expansion coefficient(CTE).It also exhibited excellent thermal,hydrophobicity,and mechanical performance.The all-organic PI/COF hybrid films have great commercial potential as next-generation electronic packaging materials. 展开更多
关键词 POLYIMIDE Covalent organic framework all-organic Cross-linking structure Dielectric property Hybrid film
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Fully rubbery synaptic transistors made out of all-organic materials for elastic neurological electronic skin 被引量:4
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作者 Hyunseok Shim Seonmin Jang +4 位作者 Jae Gyu Jang Zhoulyu Rao Jong-ln Hong Kyoseung Sim Cunjiang Yu 《Nano Research》 SCIE EI CSCD 2022年第2期758-764,共7页
Neurologic function implemented soft organic electronic skin holds promise for wide range of applications,such as skin prosthetics,neurorobot,bioelectronics,human-robotic interaction(HRI),etc.Here,we report the develo... Neurologic function implemented soft organic electronic skin holds promise for wide range of applications,such as skin prosthetics,neurorobot,bioelectronics,human-robotic interaction(HRI),etc.Here,we report the development of a fully rubbery synaptic transistor which consists of all-organic materials,which shows unique synaptic characteristics existing in biological synapses.These synaptic characteristics retained even under mechanical stretch by 30%.We further developed a neurological electronic skin in a fully rubbery format based on two mechanoreceptors(for synaptic potentiation or depression)of pressure-sensitive rubber and an all-organic synaptic transistor.By converting tactile signals into Morse Code,potentiation and depression of excitatory postsynaptic current(EPSC)signals allow the neurological electronic skin on a human forearm to communicate with a robotic hand.The collective studies on the materials,devices,and their characteristics revealed the fundamental aspects and applicability of the all-organic synaptic transistor and the neurological electronic skin. 展开更多
关键词 synaptic transistor STRETCHABLE electronic skin all-organic
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PVH基全有机复合薄膜储能性能研究
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作者 朱久军 朱志彪 +1 位作者 付廷玉 侯亚飞 《绝缘材料》 CAS 北大核心 2024年第11期40-50,共11页
在薄膜电容器中自由电子过多会使得漏电流密度增加,电气强度降低,促使电容器击穿,从而阻碍了其获得优异的储能性能。为了减少自由电子和二次碰撞电离电子(SIE)对储能性能的影响,本文选择将苝酰亚胺(PDI)、1,4,5,8-萘四甲酸酐(NDI)和4-氰... 在薄膜电容器中自由电子过多会使得漏电流密度增加,电气强度降低,促使电容器击穿,从而阻碍了其获得优异的储能性能。为了减少自由电子和二次碰撞电离电子(SIE)对储能性能的影响,本文选择将苝酰亚胺(PDI)、1,4,5,8-萘四甲酸酐(NDI)和4-氰基-4′-戊基联苯(5CB)分别掺入聚偏氟乙烯-六氟丙烯(PVH)中构建全有机复合薄膜,对3种复合薄膜的结构、热学性能和储能性能等方面进行研究。结果表明:PDI质量分数为0.5%的PDI/PVH复合薄膜具有较好的热性能,更小的晶粒尺寸以及更紧密的晶格结构,有助于获得更高的电气强度和放电能量密度。通过对比发现PDI具有更合适的能带结构和电导率,使PDI/PVH复合薄膜具备更好的储能性能。0.5%PDI/PVH复合薄膜在499.7 MV/m的放电能量密度达到了16.6 J/cm^(3),并且保持了80.5%的高充放电效率。 展开更多
关键词 电子陷阱 全有机 复合材料 储能性能
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A bipolar verdazyl radical for a symmetric all-organic redox flow-type battery 被引量:1
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作者 Grant D.Charlton Stephanie M.Barbon +1 位作者 Joe B.Gilroy C.Adam Dyker 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2019年第7期52-56,共5页
A symmetric all-organic non-aqueous redox flow-type battery was investigated employing the neutral small molecule radical 3-phenyl-1,5-di-p-tolylverdazyl,which can be reversibly oxidized and reduced in one-electron pr... A symmetric all-organic non-aqueous redox flow-type battery was investigated employing the neutral small molecule radical 3-phenyl-1,5-di-p-tolylverdazyl,which can be reversibly oxidized and reduced in one-electron processes,as the sole charge storage material.Cyclic voltammetry of the verdazyl radical in 0.5 M tetrabutylammonium hexa fluoro phosphate(TBAPF6)in acetonitrile revealed redox couples at-0.17 V and-1.15 V vs.Ag+/Ag,leading to a theoretical cell voltage of 0.98 V.From the dependence of peak currents on the square root of the scan rate,diffusion coefficients on the order of 4 x 10 6 cm2 s-1 were demonstrated.Cycling performance was assessed in a static cell employing a Tokoyuma AHA anion exchange membrane,with 0.04 M verdazyl as catholyte and anolyte in 0.5 M TBAPF6 in acetonitrile at a current density of 0.12 mA cm-2.Although coulombic efficiencies were good(94%-97%)throughout the experiment,the capacity faded gradually from high initial values of 93%of the theoretical discharge capacity to 35%by the 50th cycle.Voltage and energy efficiencies were 68%and 65%,respectively.Postcycling analysis by cyclic voltammetry revealed that decomposition of the active material with cycling is a leading cause of cell degradation. 展开更多
关键词 all-organic redox FLOW BATTERY Energy storage Verdazyl RADICALS organic RADICAL COIN cell
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All-organic composites with strong photoelectric response over a wide spectral range 被引量:3
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作者 Jie Liu Kewang Yi +5 位作者 Zhaopeng Wang Zijie Zhang Yucong Qi Pan Chen Qundong Shen Baojin Chu 《Science China Materials》 SCIE EI CAS CSCD 2021年第5期1197-1205,共9页
2-hydroxynaphthylidene-1′-naphthylamine(HNAN) and –NO_(2) modified HNAN(HNAN-NO_(2)) Schiff base compounds were synthesized and exhibited strong visible light absorption(<650 nm). These compounds were added to po... 2-hydroxynaphthylidene-1′-naphthylamine(HNAN) and –NO_(2) modified HNAN(HNAN-NO_(2)) Schiff base compounds were synthesized and exhibited strong visible light absorption(<650 nm). These compounds were added to poly(vinylidene fluoride-trifluoroethylene)(P(VDF-Tr FE))ferroelectric polymer, obtaining composites with high photoelectric response under visible and infrared light. It was found that the modification of HNAN by the nitro group and the poling of the composites under a high electric field can greatly enhance the photoelectric response of the composites. The composites can generate high photovoltages of 1386 and352.7 mV under irradiation with near-infrared light(915 nm)and green light(532 nm). The mechanism of the photoelectric response of the composites under green light was explored and it was found that the response originates mainly from the coupling effect of the photothermal effect of the Schiff base and the pyroelectric effect of the ferroelectric polymer. The composites, which can be utilized as photodetector materials,are promising for next-generation artificial retina applications and the sensing capability of retina can be extended in a wide wavelength range from visible to infrared light. 展开更多
关键词 all-organic composites photoelectric response photothermal effect pyroelectric effect
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Enhancing electrochemical performances of small quinone toward lithium and sodium energy storage 被引量:2
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作者 Li-Min Zhu Guo-Chun Ding +7 位作者 Qing Han Yong-Xia Miao Xin Li Xin-Li Yang Lei Chen Gong-Ke Wang Ling-Ling Xie Xiao-Yu Cao 《Rare Metals》 SCIE EI CAS CSCD 2022年第2期425-437,共13页
Further application of organic quinone cathodes is restricted because they are inherent in poor conductivity and tend to dissolve in aprotic electrolytes.Salinization can work on the strong solubility of quinones.Here... Further application of organic quinone cathodes is restricted because they are inherent in poor conductivity and tend to dissolve in aprotic electrolytes.Salinization can work on the strong solubility of quinones.Herein,the ortho-disodium salt of tetrahydroxyquinone(o-Na_(2)THBQ)was selected to promote the electrochemical properties of tetrahydroxyquinone(THBQ).Reduced dissolution of o-Na_(2)THBQ in electrolyte after salinization(replacement of two H with two Na)contributed to enhanced electrochemical performance.In sodium-ion batteries(SIBs)in ester-based electrolyte,o-Na2THBQ cathodes at 50 mA·g^(-1)exhibited a reversible discharge capacity of 107 mAh·g^(-1)after 200 cycles.Ulteriorly,in ether-based electrolyte,reversible discharge capacities of 200.4,102.2,99.5 and 88 mAh·g^(-1)were obtained at 800,1600,3200 and 4800 mA·g^(-1)after 1000,2000,5000 and 8000 cycles,respectively.The ultraviolet absorption spectra and ex situ dissolution experiments of THBQ and o-Na_(2)THBQ showed that o-Na_(2)THBQ hardly dissolved in ether-based electrolyte.In lithium-ion batteries(LIBs),graphene was selected to further enhance the conductivity of o-Na2THBQ.At 50 mA·g^(-1),o-Na_(2)THBQ and o-Na_(2)THBQ/Gr cathodes exhibited reversible discharge capacities of 124 and 131.5 mAh·g^(-1)after 200 cycles in ester-based electrolyte,respectively.At 50 mA·g^(-1),PTPAn/o-Na_(2)THBQ electrodes in an all-organic Na/Li-ion battery showed reversible charge/discharge capacities of 51/50.3 and 33.8/33.1 mAh·g^(-1)after 200 cycles. 展开更多
关键词 Na/Li-ion batteries all-organic batteries Cathodes organic materials Electrochemical performance
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Interwoven Poly(Anthraquinonyl Sulfide)Nanosheets-Decorated Carbon Nanotubes as Core-Sheath Heteroarchitectured Cathodes for Polymer-Based Asymmetrical Full Batteries 被引量:1
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作者 Yonglin Wang Kai Chen +3 位作者 Yunhai Zhu Jiazhi Wang Nan Jiang Yingkui Yang 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2023年第5期468-476,共9页
Organic redox-active polymers provide promising alternatives to metal-containing inorganic compounds in Li-ion batteries(LIBs),whereas suffer from low actual capacities,poor rate/power capabilities,and inferior cyclin... Organic redox-active polymers provide promising alternatives to metal-containing inorganic compounds in Li-ion batteries(LIBs),whereas suffer from low actual capacities,poor rate/power capabilities,and inferior cycling stability.Herein,poly(anthraquinonyl sulfide)-coated carbon nanotubes(CNT@PAQS)are readily performed by in situ polymerization to form core-sheath nanostructures.Remarkably,flower-like PAQS nanosheets are interwoven around CNTs to synergistically create robust 3D hierarchical networks with abundant cavities,internal channels,and sufficiently-exposed surfaces/edges,thereby promoting electron transport and making more active sites accessible for electrolytes and guest ions.Apparently,the as-fabricated CNT@PAQS cathode delivers the large reversible capacity(200.5 mAh g^(-1)at 0.05 A g^(-1)),high-rate capability(161.5 mAh g^(-1)at 5.0 A g^(-1)),and impressive cycling stability(retaining 88.0%over 1000 cycles).In addition,an asymmetric full-battery using CNT@PAQS as a cathode and cyclized polyacrylonitrile-encapsulated CNTs as an anode is assembled that delivers a high energy density of 86.3 Wh kg^(-1),and retains 81.3%of initial capacity after 1000 cycles.This work opens up an efficient strategy to combine highly conductive and redox-active phases into core-sheath heterostructures to unlock the barrier of high-rate charge storage.The further integration of two polymer-based electrodes into asymmetric full cells would also consolidate the development of low-cost,sustainable,and powerful batteries. 展开更多
关键词 all-organic batteries core-sheath heterostructures lithium-ion batteries polymer electrode materials
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An all-organic aqueous potassium dual-ion battery 被引量:2
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作者 Junmin Ge Xianhui Yi +1 位作者 Ling Fan Bingan Lu 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2021年第6期28-33,I0002,共7页
Benefiting from the environmental friendliness of organic electrodes and the high security of aqueous electrolyte,an all-organic aqueous potassium dual-ion full battery(APDIB) was assembled with 21 M potassium bis(flu... Benefiting from the environmental friendliness of organic electrodes and the high security of aqueous electrolyte,an all-organic aqueous potassium dual-ion full battery(APDIB) was assembled with 21 M potassium bis(fluoroslufonyl)imide(KFSI) water-in-salt as the electrolyte.The APDIB could deliver a reversible capacity of around 50 mAh g^(-1) at 200 mA g^(-1)(based on the weight of total active materials),a long cycle stability over 900 cycles at 500 mA g^(-1) and a high coulombic efficiency of 98.5%.The reaction mechanism of APDIB during the charge/discharge processes is verified:the FSI-could associate/disassociate with the nitrogen atom in the polytriphenylamine(PTPAn) cathode,while the K^(+) could react with C=O bonds in the 3,4,9,10-perylenetetracarboxylic diimide(PTCDI) anode reversibly.Our work contributes toward the understanding the nature of water-into-salt electrolyte and successfully constructed all-organic APDIB. 展开更多
关键词 all-organic electrode Potassium ion battery Dual-ion full battery Aqueous high concentration electrolyte High safety
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全有机营养肥水耦合对番茄品质、产量及水分利用效率的影响 被引量:36
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作者 张钧恒 马乐乐 李建明 《中国农业科学》 CAS CSCD 北大核心 2018年第14期2788-2798,共11页
【目的】在有机基质袋式栽培下,研究有机营养液与水分耦合是实现有机栽培的重要途径。【方法】试验以樱桃番茄为试材,采用有机基质袋式栽培方式,以日本园试营养液配方(F3)为对照,设置2种有机营养液配方处理:F1(有机营养液配方1)和F2(有... 【目的】在有机基质袋式栽培下,研究有机营养液与水分耦合是实现有机栽培的重要途径。【方法】试验以樱桃番茄为试材,采用有机基质袋式栽培方式,以日本园试营养液配方(F3)为对照,设置2种有机营养液配方处理:F1(有机营养液配方1)和F2(有机营养液配方2);2个灌水量水平:W1(蹲苗期及阴雨天按ET100%灌溉,其他按ET120%灌溉)和W2(蹲苗期及阴雨天按ET120%灌溉,其他按ET150%灌溉)。按照随机区组试验设计,将营养液配方和灌水量二因素进行耦合,共得6个处理。【结果】研究结果表明,与无机营养液肥(日本园试营养液)相比,两种有机营养液配方显著提高了番茄叶片的光合速率、气孔导度和蒸腾速率,同时显著提高了果实中可溶性蛋白、可溶性糖、番茄红素含量,降低了果实中硝酸盐含量,明显改善了果实品质,并且具有显著的增产效果;随灌水量的增加,叶片光合速率、气孔导度及蒸腾速率显著提高,产量提高,而果实营养品质指标略有下降,表现出一定的"稀释效应"。采用主成分分析方法对综合品质进行评价,F2W1处理的综合品质最好,F3W2处理最差;不同肥水耦合处理中,F2W2处理产量最高,除与F1W2处理差异不显著外,显著高于其他处理;F2W1处理水分利用效率最高。【结论】综合考虑番茄光合、品质、产量、灌溉水分利用效率等因素,F2W1处理为最优肥水耦合组合,即蹲苗期及阴雨天按ET100%灌溉,其他时期按ET120%灌溉,同时按有机营养液配方2进行施肥,可以作为全有机营养液肥水管理指标。 展开更多
关键词 樱桃番茄 全有机营养 有机基质 肥水耦合 品质 产量 水分利用效率
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柔性高储能TPU/P(VDF-HFP)全有机复合薄膜的制备及性能表征 被引量:6
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作者 冯启琨 张冬丽 +2 位作者 刘畅 张涌新 党智敏 《化学学报》 SCIE CAS CSCD 北大核心 2021年第10期1273-1280,共8页
拥有超快放电速率以及超高功率密度的聚合物薄膜电容器,在脉冲功率技术、先进电力与电子系统等诸多领域中发挥着关键的作用.本工作采用溶液刮涂的方法,制备了柔性全有机热塑性聚氨酯/聚偏氟乙烯-六氟丙烯(TPU/P(VDF-HFP))复合薄膜,并结... 拥有超快放电速率以及超高功率密度的聚合物薄膜电容器,在脉冲功率技术、先进电力与电子系统等诸多领域中发挥着关键的作用.本工作采用溶液刮涂的方法,制备了柔性全有机热塑性聚氨酯/聚偏氟乙烯-六氟丙烯(TPU/P(VDF-HFP))复合薄膜,并结合多种表征手段系统地研究了复合薄膜的微观特性、介电特性、绝缘特性、储能特性以及力学性能.系统观察和测试结果表明:适量热塑性聚氨酯添加到P(VDF-HFP)中,能够形成分散性和相容性均十分优异的两相交联结构,从而进一步提高复合材料的电学、储能、力学等性能.在P(VDF-HFP)中添加2%(φ) TPU时,复合薄膜的特征击穿强度为450MV/m,对应的放电能量密度为7.03J/cm3,分别提高了25.35%和49%.此外,复合材料的机械性能也随着TPU的添加得到一定程度的提高,TPU-2%(φ)/P(VDF-HFP)复合薄膜的杨氏模量、抗拉强度以及断裂伸长率分别达到591.22 MPa, 25.6 MPa, 362%.通过以上表征分析,发现在聚合物中添加弹性体橡胶能够形成具有高击穿强度、高能量密度以及高充放电效率等优点的柔性电介质材料,有望在大规模的工业生产中获得较好的应用. 展开更多
关键词 电介质 P(VDF-HFP) 全有机聚合物 击穿强度 能量密度 薄膜电容器
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聚合物基全有机复合电介质材料研究进展 被引量:5
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作者 路卫卫 蔡会武 +3 位作者 刘畅 陈守丽 杜月 石凯 《绝缘材料》 CAS 北大核心 2021年第12期10-14,共5页
聚合物基全有机复合电介质材料相比于其他的电介质材料具有电气强度高、介质损耗低、质量轻、机械加工性能优良等优点,更适合于实际应用。本文综述了以纯聚偏氟乙烯(PVDF)、PVDF共聚物、其他聚合物作为基体的聚合物基全有机复合电介质... 聚合物基全有机复合电介质材料相比于其他的电介质材料具有电气强度高、介质损耗低、质量轻、机械加工性能优良等优点,更适合于实际应用。本文综述了以纯聚偏氟乙烯(PVDF)、PVDF共聚物、其他聚合物作为基体的聚合物基全有机复合电介质材料的研究进展,并对聚合物基全有机复合电介质材料在电容储能及实际应用中仍面临的一些问题作了探讨,对其未来发展进行了展望。 展开更多
关键词 有机填料 全有机复合电介质 介电性能 放电能量密度
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基于击穿增强的全有机复合薄膜储能提升策略研究进展 被引量:3
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作者 张磊 陈玥 +3 位作者 孙文杰 李天宇 郑亦婷 成永红 《高电压技术》 EI CAS CSCD 北大核心 2023年第3期1081-1094,共14页
聚合物薄膜电容器是支撑新能源智能配网发展的重要电力设备之一,提升聚合物电介质薄膜的储能密度是改善薄膜电容器储能器件性能的关键。由经典电磁理论可知,提高聚合物电介质薄膜的储能密度可以从介电常数和击穿强度两个角度实现。然而... 聚合物薄膜电容器是支撑新能源智能配网发展的重要电力设备之一,提升聚合物电介质薄膜的储能密度是改善薄膜电容器储能器件性能的关键。由经典电磁理论可知,提高聚合物电介质薄膜的储能密度可以从介电常数和击穿强度两个角度实现。然而,目前储能薄膜领域中的综述大多是围绕提高介电常数来增加储能密度的角度进行归纳、分析,而从击穿强度的角度来系统综述的相对较少。因此,文章尝试以全有机聚合物电介质为研究对象,立足于提升击穿强度的角度,重点讨论掺杂、共混、共聚和多层结构的策略。在此基础上,文章还进一步整理和比较各策略的效果,希望为后续在全有机聚合物复合薄膜的结构设计与击穿性能提升方面上提供一些思路。 展开更多
关键词 薄膜电容器 电介质薄膜 全有机聚合物 击穿强度 储能密度
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高温储能电容器用全有机PVDF/PI复合薄膜制备及性能表征
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作者 冯启琨 张涌新 +2 位作者 王昕劼 王健涛 党智敏 《电力电容器与无功补偿》 2024年第1期68-75,共8页
高温介电聚合物在高温静电储能薄膜电容器中有着广阔的应用。然而,目前常规的高温聚合物电介质介电常数与能量密度较低,这限制了其在高温环境中的应用。为进一步提高高温电介质材料在高温下的介电及储能特性,本研究以聚偏氟乙烯(polyvin... 高温介电聚合物在高温静电储能薄膜电容器中有着广阔的应用。然而,目前常规的高温聚合物电介质介电常数与能量密度较低,这限制了其在高温环境中的应用。为进一步提高高温电介质材料在高温下的介电及储能特性,本研究以聚偏氟乙烯(polyvinylidene fluoride,PVDF)为填料,聚酰亚胺(polyimide,PI)为基体,采用原位聚合方法制备了全有机PVDF/PI复合电介质薄膜。系统地研究了铁电PVDF相含量对PI微观结构与形貌、介电性能、储能特性、以及热性能等影响。结果表明:PVDF填料在PI基体中具有良好的相容性和分散。PVDF的引入会使得PI基复合薄膜的击穿强度出现一定程度的下降,但是可以明显提高复合薄膜的介电常数和放电能量密度。其中,PVDF添加质量分数为30的复合薄膜在室温和250 MV/m条件下放电能量密度达到1.89 J/cm^(3),充放电效率为92.4%;而100℃和200 MV/m条件下的放电能量密度达到1.13 J/cm^(3),充放电效率为89.1%。此外,PVDF/PI复合薄膜在高温和高电场的恶劣条件下具有良好的充放电循环性能以及热稳定性。该研究为改善聚合物基复合电介质在高温环境中的储能特性提供了一种新的设计思路。 展开更多
关键词 薄膜电容器 全有机电介质 介电性能 储能特性 循环稳定性
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本体聚合PMMA基复合介质膜的储能特性研究
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作者 蔡博 赵月涛 +5 位作者 孟祥硕 周榆久 王礼坤 叶虎 潘齐凤 徐建华 《绝缘材料》 CAS 北大核心 2024年第4期22-27,共6页
目前有机薄膜电容器中的介质材料多为线性电介质,这类聚合物的介电常数通常较低,造成电容器储能密度普遍偏低,而新型高储能聚合物介质材料一般又存在介质损耗高的问题。聚甲基丙烯酸甲酯(PMMA)与高储能含氟聚合物的相容性较好,常被用来... 目前有机薄膜电容器中的介质材料多为线性电介质,这类聚合物的介电常数通常较低,造成电容器储能密度普遍偏低,而新型高储能聚合物介质材料一般又存在介质损耗高的问题。聚甲基丙烯酸甲酯(PMMA)与高储能含氟聚合物的相容性较好,常被用来改善后者的力学和击穿性能,但市售的PMMA存在本征介质损耗过高的问题。为了降低PMMA的介质损耗,本文用甲基丙烯酸甲酯(MMA)与苯乙烯(St)合成MMA-St共聚物(MS),将不同比例的MS掺入本体聚合的PMMA中形成复合体系,并研究复合体系的介电特性、储能特性及绝缘特性。结果表明:该复合体系可以显著降低PMMA的介质损耗,相较于PMMA更适合作为高储能聚合物的改性材料。其中复合10%MS的介质膜在5 500 kV/cm电场下获得了5 J/cm^(3)的放电能量密度,充放电效率达到83%。 展开更多
关键词 聚甲基丙烯酸甲酯 介质损耗 储能 全有机复合介质膜
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高储能聚合物材料复配体系研究进展 被引量:3
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作者 李志坚 邢继文 +3 位作者 杜伯学 肖萌 孔晓晓 李进 《电气工程学报》 CSCD 2021年第1期134-140,共7页
聚合物基介电电容器因其卓越的电气性能而被广泛应用于电力、军工等领域,但较低的储能密度限制其进一步发展,研究开发具有高放电能量密度的聚合物材料势在必行。评价聚合物材料储能特性的两个重要指标分别是放电能量密度和储能效率,为... 聚合物基介电电容器因其卓越的电气性能而被广泛应用于电力、军工等领域,但较低的储能密度限制其进一步发展,研究开发具有高放电能量密度的聚合物材料势在必行。评价聚合物材料储能特性的两个重要指标分别是放电能量密度和储能效率,为提高放电能量密度和稳定储能效率,诸多理论与方法被提出与应用。基于材料性能与材料制备手段,介绍了目前国内外关于聚合物材料储能特性复配体系的研究进展,主要围绕全有机复合体系和无机/有机复合体系展开,并指出了目前研究进展的瓶颈。 展开更多
关键词 聚合物介电电容器 聚合物材料 高放电能量密度 储能效率 全有机复合体系 无机/有机复合体系
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蒸镀法制备全有机并五苯薄膜场效应晶体管 被引量:4
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作者 王伟 石家纬 +5 位作者 郭树旭 刘明大 张宏梅 梁昌 全宝富 马东阁 《发光学报》 EI CAS CSCD 北大核心 2007年第2期203-206,共4页
以全蒸镀方法在真空室内一次性制备了正装结构的全有机并五苯薄膜场效应晶体管。正装结构全蒸镀法有利于简化工艺制备程序,缩小器件尺寸,提高集成度。制备的绝缘层厚度仅为50nm的全有机薄膜场效应晶体管,器件的工作电压降至10V,相同电... 以全蒸镀方法在真空室内一次性制备了正装结构的全有机并五苯薄膜场效应晶体管。正装结构全蒸镀法有利于简化工艺制备程序,缩小器件尺寸,提高集成度。制备的绝缘层厚度仅为50nm的全有机薄膜场效应晶体管,器件的工作电压降至10V,相同电压下饱和输出电流有了明显提高。筛选适当的有机绝缘材料,改善全有机薄膜场效应晶体管有源层/绝缘层的界面性能,使阈值电压几乎降至0V,场效应迁移率提高了3倍多,输出饱和电流也有了明显的提高。 展开更多
关键词 全蒸镀 全有机薄膜场效应晶体管
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