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Durable Polyelectrolyte Microcapsules with Near-Infrared-Triggered Loading and Nondestructive Release of Cargo

机译:耐用的聚电解质微胶囊,具有近红外触发的装载和无损释放货物

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Microcapsules formed using a "layer-by-layer" alternating deposition of oppositely charged polyelectrolytes on sacrificial templates have reached high interest because of their facile fabrication procedure using a broad range of materials and tailored properties. However, their practical applications as microcarriers are limited as the capsules commonly suffer from low mechanical stability that can be enhanced by chemical or physical crosslinking but at the expense of decrcc in A permeability of the capsules' walls. It is demonstrated here that tilt incorporation of multiwalled carbon nanotubes in a relatively small amount (3.5%) arranged in the direction perpendicular to the capsules' walls led to an almost 20-fold increase of the apparent elastic modulus of the microcapsules as shown using the osmotic pressure method Importantly, the introduced carbon nanotubes due to their absorption iii the near-infrared region and specific arrangement enabled also a light-triggered increase of permeability of the capsules in a reversible, nondestructive manner as shown using fluorescently labeled dextrans of various molar masses. Such results imply durability and facile loading/unloading of the microcapsules that are both crucial for their practical applications as microcontainers and microreactors.
机译:利用带相反电荷的聚电解质在牺牲模板上“逐层”交替沉积形成的微胶囊因其使用广泛的材料和定制特性的简便制造工艺而受到高度关注。然而,它们作为微载体的实际应用受到限制,因为胶囊通常具有较低的机械稳定性,这种稳定性可以通过化学或物理交联来增强,但以降低胶囊壁的渗透性为代价。本文证明,在垂直于胶囊壁的方向上,相对少量(3.5%)的多壁碳纳米管倾斜掺入导致微胶囊的表观弹性模量增加近20倍,如渗透压法所示,引入的碳纳米管由于其在近红外区域的吸收和特殊的排列,也能够以可逆的、非破坏性的方式,以光触发的方式增加胶囊的渗透性,如使用各种摩尔质量的荧光标记的右旋糖酐所示。这些结果意味着微胶囊的耐用性和易于装载/卸载,这对于微容器和微反应器的实际应用都至关重要。

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