二氧化钛纳米管作为一种高效的绿色催化剂,用于多组分合成蓝光发射吡唑基荧光团

IF 5.45 Q1 Physics and Astronomy
Sultana Shaik , Sai Teja Talari , Rama Mohana Reddy Sirigireddy , Pushpavathi Itte , Kakarla Raghava Reddy , Chinna Gangi Reddy Nallagondu , Tejraj M. Aminabhavi
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引用次数: 0

摘要

采用TiO2纳米管(TNTs)作为绿色非均相催化剂,通过β-胺酮(1)、硫代氨基脲(2)和α-溴酮(3)在乙醇和水中(2:1)的三组分反应合成固态蓝光发光吡唑基噻唑(4)。采用水热法制备了tnt,并采用XRD、UV-Vis DRS、光致发光(PL)、HRTEM和EDAX技术对其进行了表征。单步构建3个C-N和1个C-S键、自然友好的反应结构、大的底物范围、使用无害溶剂、短反应时间内的优异收率(91-98 %)、克级的可行性以及无需柱净化就能生成纯产物是当前多组分反应(MCR)策略的吸引人的特点。此外,该催化介质对多种β-胺酮(1)和α-溴酮(3)表现出优异的催化效率;回收的tnt催化剂使用7次。研究了PZTZs(4)的光物理和电化学性质。通过改变噻唑和吡唑环上的取代基,合成的PZTZs(4)具有可调节的光物理和电化学性能。因此,PZTZs(4)是制造高效且经济可行的蓝色有机发光二极管(BOLEDs)的有前途的材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
TiO2 nanotubes as an efficient green catalyst for the multi-component synthesis of blue light emissive pyrazolyl-thaizole based fluorophores
TiO2 nanotubes (TNTs) are employed as a green heterogeneous catalyst for the synthesis of solid-state blue light emissive pyrazolyl-thiazoles (PZTZs) (4) via the three-component reaction of β-enaminones (1), thiosemicarbazide (2) and α-bromoketones (3) in ethanol and water (2:1). TNTs were prepared by hydrothermal method and characterized by XRD, UV-Vis DRS, photoluminescence (PL), HRTEM and EDAX techniques. Construction of three C–N and one C-S bonds in a single-step, nature-friendly reaction profile, large substrate scope, use of non-hazardous solvents, excellent yields (91–98 %) in short reaction times, gram scale feasibility and formation of pure products without the help of column purification are the attractive features of the present multi-component reaction (MCR) strategy. In addition, the catalytic medium displayed excellent efficiency towards diversified β-enaminones (1) and α-bromoketones (3); the recovered TNTs catalyst is used 7 times. Photophysical and electrochemical properties of PZTZs (4) have been investigated. The synthesized PZTZs (4) showed tunable photophysical and electrochemical properties by varying the substituents on both thiazole and pyrazole rings. Hence, the PZTZs (4) are promising materials for fabricating efficient and economically viable blue organic light-emitting diodes (BOLEDs).
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来源期刊
Nano-Structures & Nano-Objects
Nano-Structures & Nano-Objects Physics and Astronomy-Condensed Matter Physics
CiteScore
9.20
自引率
0.00%
发文量
60
审稿时长
22 days
期刊介绍: Nano-Structures & Nano-Objects is a new journal devoted to all aspects of the synthesis and the properties of this new flourishing domain. The journal is devoted to novel architectures at the nano-level with an emphasis on new synthesis and characterization methods. The journal is focused on the objects rather than on their applications. However, the research for new applications of original nano-structures & nano-objects in various fields such as nano-electronics, energy conversion, catalysis, drug delivery and nano-medicine is also welcome. The scope of Nano-Structures & Nano-Objects involves: -Metal and alloy nanoparticles with complex nanostructures such as shape control, core-shell and dumbells -Oxide nanoparticles and nanostructures, with complex oxide/metal, oxide/surface and oxide /organic interfaces -Inorganic semi-conducting nanoparticles (quantum dots) with an emphasis on new phases, structures, shapes and complexity -Nanostructures involving molecular inorganic species such as nanoparticles of coordination compounds, molecular magnets, spin transition nanoparticles etc. or organic nano-objects, in particular for molecular electronics -Nanostructured materials such as nano-MOFs and nano-zeolites -Hetero-junctions between molecules and nano-objects, between different nano-objects & nanostructures or between nano-objects & nanostructures and surfaces -Methods of characterization specific of the nano size or adapted for the nano size such as X-ray and neutron scattering, light scattering, NMR, Raman, Plasmonics, near field microscopies, various TEM and SEM techniques, magnetic studies, etc .
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