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单离子和多价离子环境对晶格内纳米颗粒接枝单链 DNA 的影响。

Effect of mono- and multi-valent ionic environments on the in-lattice nanoparticle-grafted single-stranded DNA.

机构信息

Department of Physics, Indian Institute of Technology Bombay, Mumbai, 400076, India.

Center for Nanoscience, Indian Institute of Technology Bombay, Mumbai, 400076, India.

出版信息

Soft Matter. 2022 Jan 19;18(3):526-534. doi: 10.1039/d1sm01171e.

Abstract

Polyelectrolyte (PE) chains respond in a complex manner to multivalent salt environments, and this behavior depends on pH, temperature, and the presence of specific counter ions. Although much work has been done to understand the behaviour of free PE chains, it is important to reveal their behaviour on a nanoparticle's surface, where surface constraints, particle geometry, and multi-chain environment can affect their behaviour and contribute to particles' assembly states. Our work investigates, using small-angle X-ray scattering (SAXS), the morphology of PE (single-stranded DNA) chains grafted onto the surface of spherical gold nanoparticles assembled in a lattice in the presence of monovalent, divalent and trivalent salts. For divalent salts, the DNA brush length was found to decrease at a faster rate with salt concentration than in the monovalent salt environment, while trivalent salts led to chain collapse. Using a power law analysis and the modified Daoud-Cotton model, we have obtained insight into the mechanism of a nanoparticle-grafted chain's response to ionic environments. Our analysis suggests that the decrease in brush length is due to the conventional electrostatic screening for monovalent systems, whereas for divalent systems both electrostatic screening and divalent ion bridging must be considered.

摘要

聚电解质 (PE) 链对多价盐环境的响应非常复杂,这种行为取决于 pH 值、温度以及特定抗衡离子的存在。虽然已经进行了大量工作来理解游离 PE 链的行为,但揭示它们在纳米粒子表面的行为非常重要,因为表面约束、粒子几何形状和多链环境会影响它们的行为,并导致粒子的组装状态。我们的工作使用小角度 X 射线散射 (SAXS) 研究了在单、二价和三价盐存在下,接枝在球形金纳米粒子表面的聚电解质(单链 DNA)链的形态,这些纳米粒子在晶格中组装。对于二价盐,与在单价盐环境中相比,DNA 刷的长度随盐浓度的增加而更快地减小,而三价盐则导致链坍塌。通过幂律分析和改进的 Daoud-Cotton 模型,我们深入了解了纳米粒子接枝链对离子环境的响应机制。我们的分析表明,刷长的减小是由于单价体系的常规静电屏蔽,而对于二价体系,必须同时考虑静电屏蔽和二价离子桥接。

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