bamanai119
电子、光学、磁和/或结构特性,而这些导电高分子合成化学和可,电化学聚合反应添加适当控制和调节功能团到他们的骨干。(PPy Polypyrrole)和polythiophene镀通孔)是可能的(更彻底地调查家长p-polyconjugated化合物,因为他们卓越的性能以及优良的环境的稳定。在镀通孔衍生物、聚(3,4-ethylenedioxythiophene)(1),计划PEDOT被认为是最有用的由于其有趣的属性。(10 - 16)的具体的电导率高于PEDOT镀通孔,此外,被认为是最稳定的导电聚合物目前可用的。另一方面,聚Nmethylpyrrole PNMPy)(1),是一种简单的方案和高electroactivity Ppy衍生物和电化学稳定性。[17]然而,对比和PEDOT PNMPy制备实验条件下阳极electropolymerization显示相同的电气和电化学性能的资料明显高于前者。这个应用程序的导电聚合物在生物学和电子正在成为一个伟大的重要性。[5]的特别的互动进行 与生物分子聚合物(例如氨基酸、蛋白质、酶、脱氧核糖核酸(DNA)和生物感兴趣的生物)的应用程序,因为内在性质的影响,这些材料的分子和细胞bioprocesses。从实用的角度来看,一体化的生产与生物系统导电聚苯胺已经有用的应用,如植入发展为组织工程(19 - 22)或神经再生,(23 - 24日)机械驱动器(artificialmuscles),[26]],[27,28传感器等。 开发具有生物活性的平台,即基于导电聚合物基质细胞粘附、导电、扩散是一个有效的策略,使用这些材料不同的生物技术上的应用(例如tissueengineering和骨科)。[22,29 - 32]在这一背景下,在最近的研究中我们检查了粘上皮细胞的增殖和Hep-2 PEDOT表面上的电影。(22),对PEDOT electroactvity测定循环伏安法(),被发现时,它大大增加遮蔽了单层细胞。这项工作我们呈现一个全面的研究,对细胞粘附、增殖能力,在两个纯导电聚合物PEDOT PNMPy(),形成多元系统的两层隔开的一层PEDOT PNMPy PEDOT / PNMPy / PEDOT(,以后表示,在那里3lmeans 3l-PEDOT / PNMPy 3-layered)用四种不同类型的细胞。(仅供参考)
生命若尘
在电子,光学,磁性和/或结构特性的这些导电聚合物,它可以合成的化学和电化学聚合,已经得到控制,并通过添加适当的调控功能团体的骨干。聚吡咯(吡咯)和聚噻吩( PTh )也许是更彻底的调查,父母的P - polyconjugated化合物由于其出色的性能以及良好的环境稳定。在PTh衍生物,聚( 3,4 - ethylenedioxythiophene ) ( PEDOT ,计划1人) ,已被发现的最有用的,因为它有趣的属性。 [ 10月16日]具体来说,电导率PEDOT高于PTH和,此外,被认为是最稳定现有的导电聚合物。另一方面,聚( Nmethylpyrrole ) ( PNMPy ,计划1 )是一个简单的聚吡咯衍生物与高electroactivity和电化学稳定性。 [ 17 ]然而,比较PNMPy和PEDOT阳极电编写的相同实验条件下显示,电力和电化学性能的材料,后者明显高于前者。应用导电聚合物之间的相互作用在生物学和电子正在成为一个非常重要的领域。 [ 5 ]具体而言,进行互动 聚合物与生物大分子(如氨基酸,蛋白质,酶, DNA )和活的生物体( egcells )很有意思,因为生物医学应用的内在特性可以影响这些材料的分子和细胞bioprocesses 。从实际的角度来看,一体化的生产导电聚合物的生物是有益的发展应用,如植入组织工程[ 19-22 ]或神经再生, [ 23-25 ]机械传动装置( artificialmuscles ) , [ 26 ]传感器, [ 27,28 ]等 生物活性的发展平台的基础上导电聚合物,即电基板,为细胞粘附和增殖是一个有效的战略,以利用这些材料的不同医学领域的应用(例如tissueengineering并骨科) 。 [ 22,29-32 ]在这种情况下,在一个非常我们最近的研究报告审查的粘附和增殖的上皮细胞Hep - 2的表面上的PEDOT电影。 [ 22 ] electroactvity的PEDOT ,这是确定的循环伏安( CV ) ,被发现将显着增加时,它是覆盖由一个细胞单层。在这项工作中,我们提出一份全面研究细胞粘附,增殖和活力的两个纯导电聚合物, ( PEDOT和PNMPy )和一个多系统所形成的两层PEDOT分隔层PNMPy ( PEDOT / PNMPy / PEDOT ,以下被命名为3l-PEDOT/PNMPy ,在那里3lmeans 3层)使用四种不同类型的细胞。恩 就这些,希望能帮到你。
瓶子好多
The electronic,optical,magnetic and/or structural properties of these conducting polymers,which can be synthesized by chemical and electrochemical polymerization,have been controlled and modulated by adding suitable functional groups to their backbone. Polypyrrole(PPy) and polythiophene (PTh) are probably the more thoroughly investigated parent p-polyconjugated compounds because of their remarkable properties as well as their excellent environmental stability. Among PTh derivatives, poly(3,4-ethylenedioxythiophene) (PEDOT, Scheme 1), has been found to be the most useful due to its interesting properties.[10–16] Specifically, the electrical conductivity of PEDOT is higher than that of PTh and, in addition, is considered as the most stable conducting polymer currently available. On the other hand, poly(Nmethylpyrrole) (PNMPy, Scheme 1) is a simple Ppy derivative with high electroactivity and electrochemical stability.[17] However, comparison between PNMPy and PEDOT prepared by anodic electropolymerization under identical experimental conditions revealed that the electrical and electrochemical performances of the latter material are significantly higher than those of the former. The application of conducting polymers at the interface between biology and electronics is becoming an area of great importance.[5] Specifically, the interaction of conducting polymers with both biomolecules (. aminoacids, proteins, enzymes, DNA) and living organisms () are interesting for biomedical applications because the intrinsic properties of these materials can influence the molecular and cellular bioprocesses. From a practical point of view, the integration of produced conducting polymer with biosystems has been useful for the development of applications such as implants for tissue engineering[19–22] or nerve regeneration,[23–25] mechanical actuators (artificialmuscles),[26] sensors,[27,28] etc. The development of bioactive platforms based on conducting polymers, . electroactive substrates, for cell adhesion and proliferation is a valid strategy to use these materials for different biomedical applications (. tissueengineering and orthopedics).[22,29–32] Within this context,in a very recent study we examined the adhesion and proliferation of epithelial cells Hep-2 on the surface of PEDOT films.[22] The electroactvity of PEDOT, which was determined by cyclic voltammetry (CV), was found to increase significantly when it is covered by a cellular monolayer. In this work we present a comprehensive study about cellular adhesion, proliferation and viability on two pure conducting polymers, (PEDOT and PNMPy) and a multicomponent system formed by two layers of PEDOT separated by one layer of PNMPy (PEDOT/PNMPy/PEDOT, hereafter denoted 3l-PEDOT/PNMPy, where 3lmeans 3-layered) using four different types of cells.
等于个圈圈
机器降重是AI技术的初步应用、以上千万篇学术论文数据为训练语料,使用深度学习的方法进行语法和语义分析,挖掘出词汇在语义中的空间向量模型中的关系,进行词语、语句替换重组,达到自动降重效果。我学姐推荐的北京译顶科技那边做的不错,你可以考虑一下。知道更多可以加速去知道了解下。
我上个月在中慧言翻译公司的翻译费用大概是每千字中文190元左右(中译英)。我听说如果是小语种的可能费用更高一点,你说的论文翻译大概需要多少钱,需要看是什么语言,
电子、光学、磁和/或结构特性,而这些导电高分子合成化学和可,电化学聚合反应添加适当控制和调节功能团到他们的骨干。(PPy Polypyrrole)和polyth
励志挣钱的文案(精选29句) 1.他认为股市只要低价买进高价卖出就能赚钱,并对此一直自信不疑,但是去年他让股市忽悠了。 2.一个项目,一个想法如果不够独特的话
18世纪末至19世纪初,现代临床医学在西欧诞生,这在医学史上是具有划时代意义的重大进步。下文是我为大家搜集整理的关于临床医学论文3000字的内容,欢迎大家阅读参
当然清北医学翻译,我用过不仅价格便宜,主要质量好,aje等国外的公司也用过,但是对于学生党来说有点贵了。