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首页> 外文期刊>The Journal of Chemical Physics >Nanochannel induced advection with reaction-diffusion dynamics of reacting ions leads to self-assembly of ordered cylindrical structures
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Nanochannel induced advection with reaction-diffusion dynamics of reacting ions leads to self-assembly of ordered cylindrical structures

机译:具有反应离子的反应扩散动力学的纳米通道诱导对流导致有序圆柱结构的自组装

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We present a theoretical model, which elucidates the physical principles involved in the formation of very uniform CdS nanocylinders of different radii by combining the physics of flow, diffusion, self assembly, and aggregation of constituent particles. Very recent experiments report that when 0.1M solutions of CdCl_2 and Na_2S were allowed to mix through some anodised aluminium oxide (AAO) nanochannels, one observes the growth of an array of CdS nano-cylinders on only one end of the AAO template [A. Varghese and S. Datta, Phys. Rev. E 85, 056104 (2012)]. These cylinders have a pore along the center of the cylinder but closed at one end. The reaction happens only in the Na_2S chamber, and growth of cylinders of uniform size and shape continues as long as the supply of the reactant molecules (CdCl_2 and Na_2S) is maintained. To try to understand the physics of the observed phenomenon, we propose a model where the Cd~(+2) ions exit the AAO-nanochannel to enter Na_2S chamber with a finite velocity; these ions then react with the diffusing S~(-2) ions to form CdS, which then self assemble to form cylinders of uniform width and cross-section. The flow of Cd~(+2) out of the AAO nano-channel is the key symmetry breaking feature, which facilitates the formation of uniform cylindrical structures of CdS instead of a CdS precipitate. Since our model does not crucially depend on the chemical details of the reaction, this mechanism can be extended to self-assemble other structures of relevance.
机译:我们提出了一个理论模型,通过结合流动,扩散,自组装和组成粒子的物理学,阐明了形成不同半径的非常均匀的CdS纳米圆柱体所涉及的物理原理。最近的实验报道,当允许0.1M CdCl_2和Na_2S溶液通过某些阳极氧化铝(AAO)纳米通道混合时,人们只能在AAO模板的一端观察到一系列CdS纳米圆柱体的生长[A. Varghese和S.Datta,物理学。 E 85,056104(2012)。这些圆柱体沿圆柱体中心有一个孔,但一端封闭。该反应仅在Na_2S腔室中发生,并且只要维持反应物分子(CdCl_2和Na_2S)的供应,尺寸和形状均匀的圆柱体就会继续生长。为了试图理解所观察到的现象的物理现象,我们提出了一个模型,其中Cd〜(+2)离子以有限的速度离开AAO纳米通道并进入Na_2S腔。这些离子然后与扩散的S〜(-2)离子反应形成CdS,然后自组装形成宽度和横截面均匀的圆柱体。 Cd〜(+2)从AAO纳米通道中流出是对称性破坏的关键,它有助于形成均匀的CdS圆柱结构而不是CdS沉淀。由于我们的模型并不严格依赖于反应的化学细节,因此该机制可以扩展为自组装其他相关结构。

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