Hussain Wajid, Algarni Salem, Rasool Ghulam, Shahzad Hasan, Abbas Mujahid, Alqahtani Talal, Irshad Kashif
Faculty of Material and Manufacturing, Beijing University of Technology, Beijing 100124, China.
Mechanical Engineering Department, College of Engineering, King Khalid University, Abha 9004, Saudi Arabia.
ACS Omega. 2024 Feb 29;9(10):11081-11109. doi: 10.1021/acsomega.3c07758. eCollection 2024 Mar 12.
This comprehensive review analysis examines the domain of composite thermoelectric materials that integrate nanoparticles, providing a critical assessment of their methods for improving thermoelectric properties and the procedures used for their fabrication. This study examines several approaches to enhance power factor and lattice thermal conductivity, emphasizing the influence of secondary phases and structural alterations. This study investigates the impact of synthesis methods on the electrical characteristics of materials, with a particular focus on novel techniques such as electrodeposition onto carbon nanotubes. The acquired insights provide useful guidance for the creation of new thermoelectric materials. The review also compares and contrasts organic and inorganic thermoelectric materials, with a particular focus on the potential of inorganic materials in the context of waste heat recovery and power production within industries. This analysis highlights the role of inorganic materials in improving energy efficiency and promoting environmental sustainability.
这篇综合综述分析考察了整合纳米颗粒的复合热电材料领域,对其改善热电性能的方法以及制造过程进行了批判性评估。本研究探讨了几种提高功率因数和晶格热导率的方法,强调了第二相和结构变化的影响。本研究调查了合成方法对材料电学特性的影响,特别关注诸如在碳纳米管上进行电沉积等新技术。所获得的见解为新型热电材料的创造提供了有用的指导。该综述还对有机和无机热电材料进行了比较和对比,特别关注无机材料在工业废热回收和发电方面的潜力。该分析突出了无机材料在提高能源效率和促进环境可持续性方面的作用。