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首页> 外文期刊>Nanoscale >Operando surface optical nanometrology reveals diazonium salts’ visible photografting mechanism
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Operando surface optical nanometrology reveals diazonium salts’ visible photografting mechanism

机译:Operando 表面光学纳米计量揭示了重氮盐的可见光接枝机制

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摘要

High resolution and quantitative surface modification through photografting is a highly desirable strategy towards the preparation of smart surfaces, enabling chemical functions to be precisely located onto specific regions of inert surfaces. Although promising, the mechanisms leading to direct (without the use of any additive) photoactivation of diazonium salts using visible wavelengths are poorly understood, precluding the generalization of popular diazonium-based electrografting strategies into high resolution photografting ones. In this paper, we employ quantitative phase imaging as a nanometrology tool for evaluating the local grafting rate with diffraction-limited resolution and nanometric precision. By carefully measuring the surface modification kinetics under a range of different conditions, we reveal the reaction mechanism while evaluating the influence of key parameters, such as the power density, the radical precursor concentration and the presence of side reactions.
机译:高分辨率和定量表面通过接是一个高度修改可取的策略的准备聪明的表面,使化学功能精确定位到特定区域的惰性表面。导致直接(不使用任何光活化的重氮盐添加剂)使用可见光波知之甚少,阻碍了泛化的流行diazonium-based electrografting策略进高分辨率接的。纸,我们采用量化相位成像nanometrology评估当地的工具接枝率与衍射极限分辨率和nanometric精度。表面改性动力学在一个范围内不同的条件下,我们揭示了反应而评估关键的影响机制参数,如功率密度,激进的前体浓度和存在副反应。

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