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Mechanisms of Carbon Nanotube Aggregation and theReversion of Carbon Nanotube Aggregates in Aqueous Medium

机译:碳纳米管聚集的机理与机理碳纳米管聚集体在水性介质中的还原

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摘要

Single-walled carbon nanotubes (SWCNTs) dispersed in aqueous medium have many potential applications in chemistry, biology, and medicine. Reversible aggregation of SWCNTs dispersed in water has been frequently reported, but the mechanisms behind are not well understood. Here we show that SWCNTs dispersed into aqueous medium assisted by various charged molecules can be reversibly aggregated by a variety of electrolytes with two distinct mechanisms. Direct binding of counterions to SWCNTs leads to aggregation when the surface charge is neutralized from 74 to 86%. This aggregation is driven by electrostatic instead of van der Waals interactions, thus showing similarity to that of DNA condensation induced by multivalent cations. Sequestration of counterions by chelating reagents leads to the redispersion of SWCNT aggregates. In contrast to various metal ions, polyelectrolytes have the unique ability to induce SWCNT aggregation by bridging between individual SWCNTs. Aggregation through the latter mechanism can be engineered to be reversible by exploiting various mechanisms of chain breaking, including reductionof disulfide bond in the polymer chain, and the cleavage action ofproteolytic enzymes. These findings clarify the mechanisms of SWCNTaggregation, and have broad implications in various applications ofSWCNTs in water.
机译:分散在水性介质中的单壁碳纳米管(SWCNT)在化学,生物学和医学领域具有许多潜在应用。分散在水中的单壁碳纳米管的可逆聚集已被频繁报道,但其背后的机理尚不十分清楚。在这里,我们表明,分散在水性介质中的SWCNT在各种带电分子的辅助下可以通过具有两种不同机理的各种电解质可逆地聚集。当表面电荷从74%中和到86%时,抗衡离子与SWCNT的直接结合会导致聚集。这种聚集是由静电而不是范德华相互作用驱动的,因此显示出与多价阳离子诱导的DNA缩合的相似性。通过螯合剂螯合抗衡离子导致SWCNT聚集体重新分散。与各种金属离子相反,聚电解质具有通过在各个SWCNT之间桥接而诱导SWCNT聚集的独特能力。通过利用各种机制的链断裂,包括还原,可以将通过后一种机制进行的聚集设计为可逆的在聚合物链中的二硫键,以及其裂解作用蛋白水解酶。这些发现阐明了SWCNT的机制聚合,并在以下方面的广泛应用中具有广泛的意义水中的SWCNT。

著录项

  • 期刊名称 ACS AuthorChoice
  • 作者

    Byumseok Koh; Wei Cheng; *;

  • 作者单位
  • 年(卷),期 -1(30),36
  • 年度 -1
  • 页码 10899–10909
  • 总页数 11
  • 原文格式 PDF
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