PAA

PAA
  • 文章类型: Journal Article
    随着柔性和可穿戴电子产品的蓬勃发展,对灵活电源的需求已经变得至关重要。这种日益多样化的设备的增长推动了开发用于这种柔性电源的材料的必要性,例如二次电池。燃料电池,超级电容器,传感器,染料敏化太阳能电池,等。在这种情况下,对于其他技术,例如锂离子,已经发布了有关柔性转换和能量存储设备的综合研究,这些技术突出了最近在GPE(凝胶聚合物电解质)中进行的能量转换和存储研究的重要性。然而,柔性锌电池在柔性电池领域没有得到应有的重视,它们注定是可穿戴设备未来市场的高端玩家之一。这篇综述对最著名或最突出的凝胶聚合物材料进行了广泛的概述,包括生物基聚合物,和锌化学及其在柔性可穿戴设备中的实际或功能实现。其最终目标是突出锌基电池作为电源,以填补世界柔性电池未来市场的一部分。
    With the flourish of flexible and wearable electronics gadgets, the need for flexible power sources has become essential. The growth of this increasingly diverse range of devices boosted the necessity to develop materials for such flexible power sources such as secondary batteries, fuel cells, supercapacitors, sensors, dye-sensitized solar cells, etc. In that context, comprehensives studies on flexible conversion and energy storage devices have been released for other technologies such Li-ion standing out the importance of the research done lately in GPEs (gel polymer electrolytes) for energy conversion and storage. However, flexible zinc batteries have not received the attention they deserve within the flexible batteries field, which are destined to be one of the high rank players in the wearable devices future market. This review presents an extensive overview of the most notable or prominent gel polymeric materials, including biobased polymers, and zinc chemistries as well as its practical or functional implementation in flexible wearable devices. The ultimate aim is to highlight zinc-based batteries as power sources to fill a segment of the world flexible batteries future market.
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  • 文章类型: Historical Article
    Plant hormone biology is an ever-evolving field and as such, novel avenues of research must always be sought. Technological and theoretical advancement can also allow for previously dismissed research to yield equally interesting insights into processes now that they are better understood. The auxin phenylacetic acid (PAA) is an excellent example of this. PAA is a plant auxin that also possesses substantial antimicrobial activity. It has a broad distribution and has been studied in bacteria, fungi, algae and land plants. Research on this compound in plants was prominent in the 1980s, where its bioactivity and broad distribution were frequently examined. Unfortunately, due to the strong interest in the quintessential auxin, indole-3-acetic acid (IAA), research on PAA quickly petered out. Recently, several groups have resumed investigations on this hormone in plants, yet, little is known about PAA biology and its physiological role is unclear. PAA biosynthesis from the amino acid Phe invites direct comparisons with previously studied IAA biosynthesis pathways, and recent work has shown that PAA metabolism and signaling appears to be similar to that of IAA. However, given the large gap between previous work and recent investigations, a historical review of this auxin is required to renew our understanding of PAA. Here, previous work on PAA is reassessed in light of recent research in plants and serves as a synthesis of current knowledge on PAA biology.
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  • 文章类型: Journal Article
    砷是自然界中广泛存在的元素。此外,它可以在几种基质中发现不同的物种,因此它是化学形态中的目标元素之一。尽管陆生植物的研究数量很少,与鱼或尿液等基质相比,由于这种类型的基质与人类食物链密切相关,这一数字正在上升。在形态分析中,样品制备是一个关键步骤和几个提取程序存在的缺点。在这次审查中,处理提取程序的论文,分析方法,并严格讨论了在陆地环境中种植的植物中的物种保护研究。基于使用与HPLC-ICP-MS相关的水或稀酸溶液提取的分析程序是很好的替代方案。由于它们的多功能性和敏感性,尽管较便宜的策略被证明是可行的选择。
    Arsenic is an element widely present in nature. Additionally, it may be found as different species in several matrices and therefore it is one of the target elements in chemical speciation. Although the number of studies in terrestrial plants is low, compared to matrices such as fish or urine, this number is raising due to the fact that this type of matrix are closely related to the human food chain. In speciation analysis, sample preparation is a critical step and several extraction procedures present drawbacks. In this review, papers dealing with extraction procedures, analytical methods, and studies of species conservation in plants cultivated in terrestrial environment are critically discussed. Analytical procedures based on extractions using water or diluted acid solutions associated with HPLC-ICP-MS are good alternatives, owing to their versatility and sensitivity, even though less expensive strategies are shown as feasible choices.
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