首页> 外文期刊>Journal of Physics. Condensed Matter >Optoelectronic figure of merit of a metal nanoparticle-quantum dot (MNP-QD) hybrid molecule for assessing its suitability for sensing applications
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Optoelectronic figure of merit of a metal nanoparticle-quantum dot (MNP-QD) hybrid molecule for assessing its suitability for sensing applications

机译:金属纳米粒子 - 量子点(MNP-QD)杂种分子的光电图,用于评估其对传感应用的适用性

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摘要

Recently, many have studied various configurations of metal nanoparticle-quantum dot (MNP-QD) hybrid molecules based on different metals and tunable parameters. In this paper, we aim to incite the interest in using MNP-QD nanohybrids, which possess sensing capabilities superior to those of the individual constituents, for sensing applications that rely on scattered light. When assessing whether a given MNP-QD configuration is suited for an application, sometimes it is hard to assess the pros and cons of a given configuration against other candidates. Here we propose a simple, elegant relative figure of merit (RFoM), which focuses on maximizing the scattered intensity and the refractive index sensitivity of the nanohybrid, to rank the suitability of viable MNP-QD configurations for a particular sensing application. We use the proposed RFoM to analyse the optical spectra of noble, transition, post transition and alkali metal based MNP-QD nanohybrids using the representative metals Au, Ag, Cu, Al and Na, adopting a generalized nonlocal optical response (GNOR) method based cavity QED approach. Based on our observations, we suggest how the usage of MNP-QD nanohybrids could improve the conventionally studied tumour targeting applications. Moreover, we propose potential substitutes for noble metals conventionally considered for MNP-QD nanohybrids.
机译:最近,许多人已经基于不同的金属和可调谐参数研究了各种构型金属纳米粒子 - 量子点(MNP-QD)混合分子的配置。在本文中,我们的目标是煽动使用MNP-QD纳米混合的兴趣,该纳米嗜含量具有优于各个成分的感测能力,用于传感依赖于散射光的应用。当评估给定的MNP-QD配置是否适合应用程序时,有时难以评估给予其他候选人的给定配置的优缺点。在这里,我们提出了一种简单,优雅的优点(RFOM)的相对图,其专注于最大化散射强度和纳米冬小麦的折射率灵敏度,以对特定感测应用的可行MNP-QD配置的适用性。我们使用所提出的RFOM通过代表性金属Au,Ag,Cu,Al和Na分析贵族,过渡,后转变和碱金属基基MNP-QD纳米酰上的光学光谱,采用基于广义的非本谱光学响应(GNOR)方法腔QED方法。基于我们的观察,我们建议如何使用MNP-QD纳米嗜含量的用途可以改善常规研究的肿瘤靶向应用。此外,我们提出了常规考虑用于MNP-QD纳米嗜含量的贵金属的潜在替代物。

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