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1.
综述了木质素改善合成高分子材料的性能和制备光电材料、阻燃材料、电磁屏蔽材料等方面的研究进展。加强木质素结构和性能的基础研究,解决木质素反应活性偏低以及与基体相容性差的问题,将木质素的耐辐射、可生物降解、阻燃、电磁屏蔽等特异性能引入到传统合成高分子材料中,制备性能优异、功能多样的先进高分子材料,是木质素高值化利用的一个重要方向。  相似文献   

2.
We sought to improve the flame-retardant performance of wood-based materials through the development of a coating material using carbon-based materials. The coating materials were applied to the surfaces of wood-based materials used for interior materials and furniture. We measured fire characteristics of the coated wood-based materials using a cone calorimeter. The coating materials were prepared by the mixing of carbon materials, such as natural graphite, expandable graphite, and exfoliated graphite nanoplatelets, in water-based coating materials. TG analysis revealed that water-based coating materials/carbon material-blended composites had good thermal durability in the working temperature ranges. The flame-retardant performance was confirmed through cone calorimeter experiments, and the result of the experiment satisfied the standard for flame-retardant performance in ISO 5600-1.  相似文献   

3.
刘潇  余浩然  沈青 《广州化学》2011,36(3):44-57
从纳米粒子、水凝胶、纤维材料和环糊精高分子等方面介绍了近年来以环糊精为基础研制的新材料的研究进展。目前以环糊精为基础的纳米粒子材料有核壳结构的纳米粒子、环糊精的化学接枝与共聚、环糊精与无机非金属材料的复合和含环糊精的囊泡材料;以环糊精为基础的凝胶材料有水凝胶和有机凝胶两种材料;此外还有以环糊精为基础的纤维材料、环糊精高...  相似文献   

4.
土遗址保护材料综述   总被引:1,自引:0,他引:1  
基于对土遗址保护材料选择的基本原则和现今国内外土遗址保护材料的研究将其分为无机材料、有机材料和有机/无机杂化材料三大类并对一些常用的土遗址保护材料及其加固保护机理进行了介绍。  相似文献   

5.
利用半导体材料光催化还原CO2合成可燃物是目前解决能源危机和缓解温室效应的理想途径.本文对几种钙钛矿型材料,包括纯无机卤化物钙钛矿材料、金属有机钙钛矿材料、氧化物型钙钛矿材料和复合型钙钛矿材料在光催化还原CO2领域的应用进行了简单的归纳与总结.  相似文献   

6.
Silicon-based materials that have higher theoretical specific capacity than other conventional anodes, such as carbon materials, Li2TiO3 materials and Sn-based materials, become a hot topic in research of lithium-ion battery (LIB). However, the low conductivity and large volume expansion of silicon-based materials hinders the commercialization of silicon-based materials. Until recent years, these issues are alleviated by the combination of carbon-based materials. In this review, the preparation of Si/C materials by different synthetic methods in the past decade is reviewed along with their respective advantages and disadvantages. In addition, Si/C materials formed by silicon and different carbon-based materials is summarized, where the influences of carbons on the electrochemical performance of silicon are emphasized. Lastly, future research direction in the material design and optimization of Si/C materials is proposed to fill the current gap in the development of efficient Si/C anode for LIBs.  相似文献   

7.
In the 21st century, soft materials will become more important as functional materials because of their dynamic nature. Although soft materials are not as highly durable as hard materials, such as metals, ceramics, and engineering plastics, they can respond well to stimuli and the environment. The introduction of order into soft materials induces new dynamic functions. Liquid crystals are ordered soft materials consisting of self‐organized molecules and can potentially be used as new functional materials for electron, ion, or molecular transporting, sensory, catalytic, optical, and bio‐active materials. For this functionalization, unconventional materials design is required. Herein, we describe new approaches to the functionalization of liquid crystals and show how the design of liquid crystals formed by supramolecular assembly and nano‐segregation leads to the formation of a variety of new self‐organized functional materials.  相似文献   

8.
In the 21st century, soft materials will become more important as functional materials because of their dynamic nature. Although soft materials are not as highly durable as hard materials, such as metals, ceramics, and engineering plastics, they can respond well to stimuli and the environment. The introduction of order into soft materials induces new dynamic functions. Liquid crystals are ordered soft materials consisting of self-organized molecules and can potentially be used as new functional materials for electron, ion, or molecular transporting, sensory, catalytic, optical, and bio-active materials. For this functionalization, unconventional materials design is required. Herein, we describe new approaches to the functionalization of liquid crystals and show how the design of liquid crystals formed by supramolecular assembly and nano-segregation leads to the formation of a variety of new self-organized functional materials.  相似文献   

9.
Calibration materials for microanalysis of Ti minerals have been prepared by direct fusion of synthetic and natural materials by resistance heating in high-purity graphite electrodes. Synthetic materials were FeTiO3 and TiO2 reagents doped with minor and trace elements; CRMs for ilmenite, rutile, and a Ti-rich magnetite were used as natural materials. Problems occurred during fusion of Fe2O3-rich materials, because at atmospheric pressure Fe2O3 decomposes into Fe3O4 and O2 at 1462 degrees C. An alternative fusion technique under pressure was tested, but the resulting materials were characterized by extensive segregation and development of separate phases. Fe2O3-rich materials were therefore fused below this temperature, resulting in a form of sintering, without conversion of the materials into amorphous glasses. The fused materials were studied by optical microscopy and EPMA, and tested as calibration materials by inductively coupled plasma mass spectrometry, equipped with laser ablation for sample introduction (LA-ICP-MS). It was demonstrated that calibration curves based on materials of rutile composition, within normal analytical uncertainty, generally coincide with calibration curves based on materials of ilmenite composition. It is, therefore, concluded that LA-ICP-MS analysis of Ti minerals can with advantage be based exclusively on calibration materials prepared for rutile, thereby avoiding the special fusion problems related to oxide mixtures of ilmenite composition. It is documented that sintered materials were in good overall agreement with homogeneous glass materials, an observation that indicates that in other situations also sintered mineral concentrates might be a useful alternative for instrument calibration, e.g. as alternative to pressed powders.  相似文献   

10.
The frequent occurrence of water pollution accidents and the leakage of organic pollutants have caused severe environmental and ecological crisis. It is thus highly imperative to find efficient materials to solve the problem. Inspired by the lotus leaf, superwetting materials are receiving increasing attention in the field of removal of organic pollutants from water. Various superwetting materials have been successfully generated and integrated into devices for removal of organic pollutants from water. On the basis of our previous work in the field, we summarized in this account the progress of removal of (1) floating and underwater insoluble, (2) emulsified insoluble, and (3) both insoluble and soluble organic pollutants from water using superwetting materials including superhydrophobic & superoleophilic materials, superhydrophilic & underwater superoleophobic materials, and materials with controllable wettability. The superwetting materials are in the forms of 2D porous materials, 3D porous materials and particles, etc. Finally, the current state and future challenges in this field are discussed. We hope this account could shed light on the design of novel superwetting materials for efficient removal of organic pollutants from water.  相似文献   

11.
超级电容器作为一种新型的能源存储装置,因为其比容量大、充放电速度快、循环寿命长等优点,在储能领域引起了极为广泛的关注。电极材料是决定超级电容器性能的核心因素,其中,常用的超级电容器电极材料主要有如下三类:碳基材料、金属氧化物及氢氧化物材料和导电聚合物材料。本文综述了超级电容器的工作原理并详细介绍了基于碳材料及其二元、三元复合体系的电极材料的研究进展。  相似文献   

12.
以高分子材料为特色的材料化学专业定位及课程体系建设   总被引:1,自引:0,他引:1  
在广泛调研的基础上,结合郑州大学材料学学科优势,提出了我校以高分子材料为特色的材料化学专业定位。在化学-高分子材料的交叉理念指导下,参考国内部分知名大学材料化学专业的教学计划和课程设置,对我校材料化学专业教学计划进行了修订,优化了化学类课程和高分子材料类课程设置,增加了一些应用类课程,同时加强了实践教学环节,并对部分课...  相似文献   

13.
有机光伏材料与器件研究的新进展   总被引:4,自引:0,他引:4  
封伟  王晓工 《化学通报》2003,66(5):291-300
近几年有机光伏电池应用研究发展迅猛。本文综述了有机光伏薄膜电池在材料(包括有机小分子材料与聚合物材料)、器件构造方面的最新进展,分析了有机聚合物光伏电池目前效率低的主要原因,并探讨了该领域进一步研究的方向和前景。  相似文献   

14.
牙周病是人类最常见的口腔疾病之一,是成年人失牙的最主要原因。近年来,随着引导性组织再生(guided tissue regeneration,GTR)技术的建立和发展,GTR材料为治疗牙周病提供了一种有效的手段,同时也成为生物医用材料领域的研究热点。文章针对近些年来GTR材料的发展情况,综述了目前GTR材料的主要种类,阐述了GTR材料的作用原理,并根据植入性组织工程材料的要求,针对目前GTR材料存在的缺点提出了相应的改进方法,展望了GTR材料的发展趋势。  相似文献   

15.
The last decade has witnessed multiple thermally responsive materials emerge as a significant class of stimuli‐responsive materials. These materials are elaborately designed and exert interesting properties. Herein, an overview of thermally responsive materials with respect to design strategies, fabrication procedures, and their applications is presented. Recently reported thermally responsive materials are highlighted. Then, applications of thermally responsive materials in bioimaging are summarized.  相似文献   

16.
随着动力电动汽车的需求不断增加,发展低成本、高能量密度的锂离子电池正极材料成为关键。无钴高镍正极材料因其能量密度高、倍率性能好而受到了极大的关注。对于无钴高镍正极材料在循环过程中热稳定性差、容量衰减等问题,研究者们虽通过不同的掺杂元素改善了材料的电化学性能,但对不同掺杂元素的作用机理研究尚浅。本文综述了近年来无钴高镍正极材料掺杂改性方面的研究进展,重点总结了不同掺杂元素对改善材料电化学性能的作用机理。综合分析表明,向无钴高镍正极材料引入掺杂元素,尽管掺杂元素在材料中的主要作用机理不尽相同,但均都提高材料电化学性能,从而改善了无钴高镍材料固有的问题。最后,对无钴高镍正极材料改善策略的发展方向进行了展望,提出了多重改善策略协同应用的可行性方案。  相似文献   

17.
阻尼材料研究进展   总被引:14,自引:0,他引:14  
对各种阻尼材料的研究进展进行了概述,内容涉及材料阻尼性能的评价方法,各种材料的阻尼机理及其影响因素,还简单介绍了先进的阻尼材料———智能阻尼材料及先进的阻尼技术———等离子真空沉积技术的研究概况。  相似文献   

18.
无机多孔材料因其具有特殊的物化性能在化工、能源、环保等相关领域被广泛应用。本文总结了无机多孔材料的当前研究进展,详细介绍了微孔、介孔、大孔材料和大孔-介孔、大孔-微孔、介孔-微孔以及大孔-介孔-微孔等复合孔材料的制备方法,并介绍了无机多孔材料在室内、外等环保催化领域的应用,特别介绍了多孔材料对于消除移动源污染的应用。最后,对当前无机多孔材料在制备方面存在的问题进行了总结,并对今后无机多孔材料的制备方法和研究方向进行了展望。  相似文献   

19.
溶胶-凝胶法制备光学杂化功能材料   总被引:9,自引:0,他引:9  
刘冰  强亮生 《化学进展》2005,17(1):0-90
在简述溶胶-凝胶法基本原理的基础上,介绍了设计杂化材料的原则及预掺杂法、后掺杂法和原位化学合成法三种溶胶-凝胶法制备光学杂化功能材料的途径;综述了稀土发光材料、波导材料和光致变色材料三种光学杂化功能材料,并结合国内外的研究提出开展光学杂化功能材料研究的重要方向.  相似文献   

20.
锂离子电池纳米级负极材料的研究   总被引:3,自引:0,他引:3  
综述了锂离子电池纳米级碳材料、锡基材料和合金材料近几年的研究成果及发展方向,探讨了该类材料目前存在的问题及解决的办法,对该类材料的发展趋势进行了展望.  相似文献   

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