首页> 外文期刊>Journal of materials science >Synthesis, growth, XRD, NLO, CHNSO, computational-structural, dielectric, photoconductivity, hardness and biostudies of diethyl 2-amino-5-{4-[bis (4-methyl phenyl) amino] benzamido} thiophene-3,4-dicarboxylate (DABMPABTD) macro-, nano crystals for device fabrication, pharma, electronic uses
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Synthesis, growth, XRD, NLO, CHNSO, computational-structural, dielectric, photoconductivity, hardness and biostudies of diethyl 2-amino-5-{4-[bis (4-methyl phenyl) amino] benzamido} thiophene-3,4-dicarboxylate (DABMPABTD) macro-, nano crystals for device fabrication, pharma, electronic uses

机译:合成,生长,XRD,NLO,CHNSO,计算结构,电介质,光电导性,硬度和二乙基二氨基-5- {4- [双(4-甲基苯基)氨基]苯并氨基}}噻吩-3,4- 二羧酸甲酯(DABMPABTD)宏观,纳米晶体,用于器件制造,Pharma,电子用途

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摘要

The organic materials are predominant over their pair offs based on their intense applications and vital utilities. The DABMPABTD crystal is synthesized by solution growth method under reduced pressure. The yield of 85% is obtained with crystal of yellowish color is attained, and the yield is better than the earlier cases. The crystals belong to triclinic system with the formula of C_(31)H_(31)N_3O_5S. The elemental analyses are carried out using CHNSO, theoretical method to resolve the components. The crystal is a NLO type of second order and is of 1.45 times highly efficient and proficient than the standard crystals of KDP. The hardness profile shows the reverse indentation (RISE) effect for applied enrichment in tribological endeavors. The dielectric studies carried out and shows better utility in device fabrication and the DABMPABTD crystal shows the negative photoconductivity. The computational elucidation of the present crystal shows the impact of the structural data with experimental data and the anti-diabetic (AD) nature of the titled crystal is also analyzed and reported.
机译:基于其强烈的应用和重要的公用事业,有机材料在其双偏移中占主导地位。在减压下通过溶液生长方法合成DABMPABTD晶体。获得85%的产率,达到淡黄色晶体,产率优于早期的情况。晶体属于具有C_(31)H_(31)N_3O_5S的公式的三星式系统。使用CHNSO进行元素分析来进行理论方法来解决组分。晶体是NLO类型的二阶,比KDP的标准晶体高1.45倍。硬度曲线显示了摩擦学致力于应用富集的逆向压痕(上升)效应。进行的介电研究和在装置制造中显示出更好的效用,并且DABMPABTD晶体显示负光电电导。本晶体的计算阐明显示了结构数据与实验数据的影响,并分析并报道了标题晶体的抗糖尿病(Ad)性质。

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  • 来源
    《Journal of materials science》 |2021年第11期|15498-15508|共11页
  • 作者单位

    Department of Mechanical Engineering Sri Ranganathar Institute of Engineering and Technology Athipalayam Coimbat-ore 641 110 TN India;

    Department of R&D/Physics Edayathangudy G.S Pillay Arts and Science College (Autonomous - Affiliated To Bharathidasan University Tiruchirappalli 620 024) Nagapattinam 611 002 Tamilnadu India;

    Department of Information Technology Saveetha School of Engineering Saveetha Institute of Medical and Technical Sciences Saveetha University Chennai 602 105 Tamilnadu India;

    Department of EEE Sri Ranganathar Institute of Engineering and Technology Athipalayam Coimbatore 641 110 TN India;

    Department of Botany St. Mary's College (Autonomous) Thoothukudi 628 001 Tamilnadu India;

    Department of Physics Adhi College of Engineering and Technology Walajabad Kanchipuram 631 605 Tamilnadu India;

    Department of Physics The New College Chennai 600 014 Tamil Nadu India;

    Department of Pure and Applied Physics Guru Ghasidas Vishwavidyala Bilaspur 495 001 Chhattisgarh India;

    Department ofR and D St. Peter's Institute of Higher Education and Research - SPIHER Avadi Chennai 600 054 Tamilnadu India;

    Department of Physics Edayathangudy G.S Pillay Arts and Science College (Autonomous - Affiliated to Bharathidasan University - Tiruchirappalli - 620 024) Nagapattinam 611 002 Tamilnadu India;

    Department of Physics A.V.V.M Sri Pushpam College (Autonomous) Thanjavur Dt Poondi 613 503 Tamilnadu India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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