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MgTiO:Mn 一种多读数温度纳米探针。

MgTiO:Mn a multi-reading temperature nanoprobe.

作者信息

Glais Estelle, Đorđević Vesna, Papan Jelena, Viana Bruno, Dramićanin Miroslav D

机构信息

Sorbonne Université, CNRS UMR7574, Collège de France, Laboratoire de Chimie de la Matière Condensée de Paris 4 Place Jussieu 75005 Paris France.

PSL Research University, Institut de Recherche de Chimie Paris Chimie Paristech-CNRS UMR 8247, 11 rue Pierre et Marie Curie 75005 Paris France

出版信息

RSC Adv. 2018 May 18;8(33):18341-18346. doi: 10.1039/c8ra02482k. eCollection 2018 May 17.

Abstract

MgTiO nanoparticles doped with Mn, with homogeneous size ranging about 63.1 ± 9.8 nm, were synthesized by a molten salt assisted sol gel method. These nanoparticles have been investigated as optical thermal sensors. The luminescence of tetravalent manganese ion in octahedral environment within the perovskite host presents drastic variations with temperature. Three different thermometry approaches have been proposed and characterized. Two luminescence intensity ratios are studied. Firstly between the two R-lines of Mn emission at low temperature (-250 °C and -90 °C) with a maximal sensitivity of 0.9% °C, but also secondly between E → A (R-line) and the T → A transitions. This allows studying the temperature variation within a larger temperature range (-200 °C to 50 °C) with a sensitivity between 0.6% °C and 1.2% °C over this range. The last proposed method is the study of the lifetime variation temperature. The effective lifetime value corresponds to a combination of transitions from two excited energy levels of the tetravalent manganese (E and T) in thermal equilibrium toward the fundamental A state. Since the more energetic transition (T → A) is spin-allowed, contrary to the E → A one, the lifetime drastically decreases with the increase in temperature leading to an impressive high sensitivity value of 4.1% °C at 4 °C and an exceptional temperature resolution of 0.025 °C. According to their optical features, MgTiO:Mn nanoparticles are indeed suitable candidates for the luminescence temperature probes at the nanoscale over several temperature ranges.

摘要

通过熔盐辅助溶胶 - 凝胶法合成了掺杂锰的MgTiO纳米颗粒,其尺寸均匀,范围约为63.1±9.8纳米。这些纳米颗粒已被作为光学热传感器进行研究。钙钛矿主体八面体环境中四价锰离子的发光随温度呈现出剧烈变化。提出并表征了三种不同的测温方法。研究了两种发光强度比。首先是低温(-250°C和-90°C)下锰发射的两条R线之间的发光强度比,最大灵敏度为0.9%/°C,其次是E→A(R线)和T→A跃迁之间的发光强度比。这使得能够在更大的温度范围(-200°C至50°C)内研究温度变化,在此范围内灵敏度为0.6%/°C至1.2%/°C。最后提出的方法是研究寿命随温度的变化。有效寿命值对应于处于热平衡状态的四价锰(E和T)的两个激发能级向基态A跃迁的组合。由于能量更高的跃迁(T→A)是自旋允许的,与E→A跃迁相反,寿命随着温度的升高而急剧下降,在4°C时导致令人印象深刻的高灵敏度值4.1%/°C和0.025°C的卓越温度分辨率。根据其光学特性,MgTiO:Mn纳米颗粒确实是在几个温度范围内用于纳米级发光温度探针的合适候选材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce63/9080588/4ff2fe129157/c8ra02482k-f1.jpg

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