Karuppusamy S, Muralidharan S, Babu K Dinesh, Sakthivel P, Choi Dongjin
Crystal Research Laboratory, Department of Physics, Anna University, Chennai, 600 025, Tamil Nadu, India.
Department of Physics, Excel Engineering College (Autonomous), Komarapalayam 637303, Tamil Nadu, India.
Heliyon. 2023 Jul 13;9(7):e18260. doi: 10.1016/j.heliyon.2023.e18260. eCollection 2023 Jul.
Applications in both science and industry have received increased attention as a result of bulk single crystals with particular orientations. However, due to the instability of organic crystals at high temperatures and stress, there is an interest in growing good-quality bulk single crystals with stable thermal and mechanical properties. Here, the 2-amino 4-methylpyridinium 4-nitrophenolate 4-nitrophenol (2A4MPPP) crystal was prepared employing a single-wall ampoule and the vertical Bridgman technique. Structure and functional groups were determined by XRD, NMR, and FTIR studies. More importantly, detailed thermal and kinetic properties such as activation energy, frequency factor, rate constant, and Avrami exponent are discussed. The mechanical stability and dielectric studies are also demonstrated for the title compound. According to the single crystal XRD investigation, 2A4MPPP is a member of the orthorhombic crystal system with the Pna21 space group. Through the TGA and DTA analyses, it was confirmed that the compound starts to melt at 98 °C and complete melting occurs at 103.3 °C. The dielectric experiments reveal the crystal's poor dielectric constant and high-frequency dielectric loss. Vickers microhardness investigations show that grown 2A4MPPP belongs to the soft materials group. As a result of these findings, the 2A4MPPP crystal should be well suited for usage in thermomechanical, microelectronic, optical communications, and nonlinear optical applications.
由于具有特定取向的块状单晶,其在科学和工业领域的应用受到了更多关注。然而,由于有机晶体在高温和应力下的不稳定性,人们对生长具有稳定热性能和机械性能的高质量块状单晶产生了兴趣。在此,采用单壁安瓿和垂直布里奇曼技术制备了2-氨基4-甲基吡啶鎓4-硝基苯酚盐4-硝基苯酚(2A4MPPP)晶体。通过XRD、NMR和FTIR研究确定了其结构和官能团。更重要的是,讨论了详细的热性能和动力学性能,如活化能、频率因子、速率常数和阿弗拉米指数。还展示了该标题化合物的机械稳定性和介电性能研究。根据单晶XRD研究,2A4MPPP是正交晶系Pna21空间群的一员。通过TGA和DTA分析,证实该化合物在98℃开始熔化,在103.3℃完全熔化。介电实验揭示了该晶体的低介电常数和高频介电损耗。维氏显微硬度研究表明,生长的2A4MPPP属于软材料组。基于这些发现,2A4MPPP晶体应非常适合用于热机械、微电子、光通信和非线性光学应用。