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手性分选聚芴在碳纳米管上的结合构型和覆盖度的实验测量

Experimental Measurement of the Binding Configuration and Coverage of Chirality-Sorting Polyfluorenes on Carbon Nanotubes.

作者信息

Shea Matthew J, Mehlenbacher Randy D, Zanni Martin T, Arnold Michael S

出版信息

J Phys Chem Lett. 2014 Nov 6;5(21):3742-9. doi: 10.1021/jz5017813. Epub 2014 Oct 16.

Abstract

Poly(9,9-dioctylfluorene-2,7-diyl) (PFO) exhibits exceptional (n,m) chirality and electronic-type selectivity for near-armchair semiconducting carbon nanotubes. To better understand and control the factors governing this behavior, we experimentally determine the surface coverage and binding configuration of PFO on nanotubes in solution using photoluminescence energy transfer and anisotropy measurements. The coverage increases with PFO concentration in solution, following Langmuir-isotherm adsorption behavior with cooperativity. The equilibrium binding constant (PFO concentration in solution at half coverage), KA, depends on (n,m) and is 1.16 ± 0.30, 0.93 ± 0.12, and 1.13 ± 0.26 mg mL(-1) for the highly selected (7,5), (8,6), and (8,7) species, respectively, and the corresponding PFO wrapping angle at low coverage is 12, 17, and 14 ± 2°, respectively. In contrast, the inferred KA for metallic nanotubes is nearly an order of magnitude greater, indicating that the semiconducting selectivity increases with decreasing PFO concentration. This understanding will quantitatively guide future experimental and computational efforts on electronic type-sorting carbon nanotubes.

摘要

聚(9,9 - 二辛基芴 - 2,7 - 二亚基)(PFO)对近扶手椅型半导体碳纳米管表现出优异的(n,m)手性和电子类型选择性。为了更好地理解和控制影响这种行为的因素,我们通过光致发光能量转移和各向异性测量,实验测定了溶液中PFO在纳米管上的表面覆盖率和结合构型。覆盖率随溶液中PFO浓度的增加而增加,遵循具有协同性的朗缪尔等温吸附行为。平衡结合常数(半覆盖时溶液中的PFO浓度)KA取决于(n,m),对于高度选择性的(7,5)、(8,6)和(8,7)物种,分别为1.16±0.30、0.93±0.12和1.13±0.26 mg mL⁻¹,低覆盖率下相应的PFO包裹角分别为12、17和14±2°。相比之下,推断的金属纳米管的KA几乎大一个数量级,表明半导体选择性随PFO浓度降低而增加。这一认识将定量指导未来关于电子类型分类碳纳米管的实验和计算工作。

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