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Exploration of catalytic performance of nano-La 2O 3 as an efficient catalyst for dihydropyrimidinone/thione synthesis and gas sensing

机译:纳米La 2 O 3 作为二氢嘧啶酮/硫酮合成和气敏有效催化剂的催化性能的探索

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In the present work, we report an proficient, elegant, and rapid one-pot synthesis of variety of 3,4-dihydropyrimidine-2(1 H )-one/thione derivatives from β-dicarbonyl compounds, urea/thiourea, and various aromatic aldehydes using nano-La~(2)O~(3)catalyst under ultrasonic irradiation. This novel synthetic strategy benefits with excellent yields, short reaction time, benign reaction conditions, clean transformation, and purification of products by non-chromatographic strategies. In addition, the synthesized nano-material was also explored as an effective gas sensor for NO~(2), LPG, methyl alcohol, and ammonia. The gas-sensing properties such as selectivity and sensitivity of selected gases along with response and recovery for nano-La~(2)O~(3)sensor are reported in this paper. In this way, conferring nano-La~(2)O~(3)is a multifunctional catalyst not only for organic synthesis but also for gas sensing. The synthesized La~(2)O~(3)nano-material was characterized by Fourier transform IR, powder X-ray diffraction, field-emission scanning electron microscopy, high-resolution transmission electron microscopy, energy-dispersive spectroscopy, and Brunauer–Emmett–Teller isotherm. The formation of Biginelli adducts was confirmed by Fourier transform IR,_(1)HNMR,_(13)CNMR, DEPT-135 (distortionless enhancement by polarization transfer spectra), and mass spectral techniques. Graphical abstract
机译:在本工作中,我们报告了一种高效,优雅,快速的一锅合成方法,该方法可从β-二羰基化合物,脲/硫脲和各种芳香族化合物中合成各种3,4-二氢嘧啶-2(1 H)-一/硫酮衍生物纳米La〜(2)O〜(3)催化剂在超声辐射下制备醛类化合物这种新颖的合成策略具有出色的收率,较短的反应时间,良好的反应条件,干净的转化以及通过非色谱策略纯化产物的优势。此外,还研究了合成的纳米材料作为NO〜(2),LPG,甲醇和氨的有效气体传感器。本文报道了纳米La〜(2)O〜(3)传感器的气体传感特性,如选择性气体的选择性和敏感性,以及响应和回收率。以此方式,赋予纳米La〜(2)O〜(3)是一种不仅用于有机合成而且用于气体传感的多功能催化剂。合成的La〜(2)O〜(3)纳米材料的特征在于傅立叶变换红外光谱,粉末X射线衍射,场发射扫描电子显微镜,高分辨率透射电子显微镜,能量色散光谱和Brunauer– Emmett-Teller等温线。 Biginelli加合物的形成通过傅里叶变换IR,_(1)HNMR,_(13)CNMR,DEPT-135(通过极化转移谱进行的无畸变增强)和质谱技术得以证实。图形概要

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