Al Zoubi Wail, Mohamed Saad Gomaa, Al-Hamdani Abbas Ali Salih, Mahendradhany Agastya Prastita, Ko Young Gun
Materials Electrochemistry Group, School of Materials Science and Engineering, Yeungnam University Gyeongsan 38541 Republic of Korea
Mining and Metallurgy Engineering Department, Tabbin Institute for Metallurgical Studies (TIMS) Tabbin Helwan 109 Cairo 11421 Egypt.
RSC Adv. 2018 Jun 27;8(41):23294-23318. doi: 10.1039/c8ra01890a. eCollection 2018 Jun 21.
This review describes the contemporary development applications on scientific areas of acyclic and cyclic Schiff bases and their complexes with an emphasis on the author's contribution to the field. After a short historical introduction, this manuscript is divided into two main parts. In the first section, Schiff bases are reviewed for their biological activities including antibacterial, antifungal, antioxidant, cytotoxic, and enzymatic activities as well as their interaction with single-stranded-DNA which have shown remarkable activities in each region of research. The second part deals with the corrosion of metal and its alloys in corrosive environments and their organic inhibitors. The main section of this part is to investigate the different chemical structures for Schiff bases used in such aggressive solution to protect metals. Knowing the maximum corrosion efficiency or bioactivity of a specific chemical structure in a specific application environment is helpful for choosing the most appropriate compound.
本综述描述了无环和环状席夫碱及其配合物在科学领域的当代发展应用,重点介绍了作者在该领域的贡献。在简短的历史介绍之后,本手稿分为两个主要部分。在第一部分中,对席夫碱的生物活性进行了综述,包括抗菌、抗真菌、抗氧化、细胞毒性和酶活性,以及它们与单链DNA的相互作用,这些在每个研究领域都显示出显著的活性。第二部分涉及金属及其合金在腐蚀环境中的腐蚀以及它们的有机抑制剂。这部分的主要内容是研究用于这种侵蚀性溶液中保护金属的席夫碱的不同化学结构。了解特定化学结构在特定应用环境中的最大腐蚀效率或生物活性有助于选择最合适的化合物。