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Improving the Thermoelectric Properties of Thick Sb2Te3 Film via Cu Doping and Annealing Deposited by DC Magnetron Sputtering using a Mosaic Target

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dc.contributor.author Nattharika Theekhasuk
dc.contributor.author Rachsak Sakdanuphab
dc.contributor.author Pilaipon Nuthongkum
dc.contributor.author Prayoonsak Pluengphon
dc.contributor.author Adul Harnwunggmoung
dc.contributor.author Mati Horprathum
dc.contributor.author Pichet Limsuwan
dc.contributor.author Aparporn Sakulkalavek
dc.contributor.author Pisan Sukwisute
dc.contributor.author ณัฐริกา ทีฆะสุข
dc.contributor.author ราชศักดิ์ ศักดานุภาพ
dc.contributor.author พิไลพร หนูทองคํา
dc.contributor.author ประยูรศักดิ์ เปลื้องผล
dc.contributor.author อดุลย์ หาญวังม่วง
dc.contributor.author มติ ห่อประทุม
dc.contributor.author พิเชษฐ ลิ้มสุวรรณ
dc.contributor.author อาภาภรณ์ สกุลการะเวก
dc.contributor.author พิศาล สุขวิสูตร
dc.contributor.other King Mongkut's Institute of Technology. School of Science th
dc.contributor.other King Mongkut's Institute of Technology Ladkrabang. College of Advanced Manufacturing Innovation th
dc.contributor.other Rajabhat Rajanagarindra University. Faculty of Science th
dc.contributor.other Huachiew Chalermprakiet University. Faculty of Science and Technology. Division of Physical Science th
dc.contributor.other Rajamangala University of Technology Suvarnabhum. Faculty of Science and Technology th
dc.contributor.other National Electronics and Computer Technology Center. Opto-Electrochemical Sensing Research Team th
dc.contributor.other King Mongkut's Institute of Technology Ladkrabang. School of Science th
dc.contributor.other King Mongkut's Institute of Technology Ladkrabang. School of Science th
dc.contributor.other King Mongkut's Institute of Technology Ladkrabang. School of Science th
dc.date.accessioned 2024-04-15T03:17:22Z
dc.date.available 2024-04-15T03:17:22Z
dc.date.issued 2021
dc.identifier.citation Current Applied Physics 31, (November 2021) : 7-15 th
dc.identifier.other https://doi.org/10.1016/j.cap.2021.07.011
dc.identifier.uri https://has.hcu.ac.th/jspui/handle/123456789/2054
dc.description สามารถเข้าถึงบทความฉบับเต็มได้ที่ https://doi.org/10.1016/j.cap.2021.07.011 th
dc.description.abstract Thick Cu-doped Sb2Te3 films were deposited on flexible substrate by DC magnetron sputtering from a mosaic Cu–Sb2Te3 target. The Cu-doped Sb2Te3 films were vacuum annealed to improve their thermoelectric properties. Density functional theory was used to clarify the internal mechanism of the Cu doped into the Sb2Te3 system. The results showed that Cu substitution on a Sb site induced electronic states or impurity peaks of Sb2Te3 at a valence band maximum. The carrier concentration of the Cu-doped Sb2Te3 films increased as the Cu-doped concentration increased. However, the crystallite size and Seebeck coefficient of the Cu-doped Sb2Te3 films decreased as the Cu-doped concentration increased. Post-annealing treatment improved the microstructure and thermoelectric properties of the Cu-doped Sb2Te3 films. The maximum electrical conductivity and power factor values of 754.20 S/cm at 50 °C and 1.56 10−3 W/mK2 at 100 °C were obtained in the annealed film with a Cu-doped concentration of 3 at%. th
dc.language.iso en_US th
dc.subject แอนติโมนีเทลลูไรด์ th
dc.subject Antimony telluride th
dc.subject ฟิล์มหนา th
dc.subject Thick films th
dc.subject แมกนีตรอนสปัตเตอริง th
dc.subject Magnetron sputtering th
dc.subject ฟังก์ชันนัลความหนาแน่น th
dc.subject Density functionals th
dc.title Improving the Thermoelectric Properties of Thick Sb2Te3 Film via Cu Doping and Annealing Deposited by DC Magnetron Sputtering using a Mosaic Target th
dc.type Article th


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