霂瑞霂��撘����迨��辣: https://has.hcu.ac.th/xmlui/handle/123456789/5852
Title: Impact of potassium doping on the physical properties of cadmium sulfide thin films prepared by sol-gel screen printing technique
Authors: Phathaitep Raksa
Patsorn Boon-on
Witawat Ponhan
Ekasiddh Wongrat
Prayoonsak Pluengphon
Piyanooch Nedkun
Panupat Chaiworn
Auttasit Tubtimtae
ไผทเทพ รักษา
วิทวัส พลหาญ
เอกสิทธิ์ วงศ์ราษฎร์
ประยูรศักดิ์ เปลื้องผล
ปิยนุช เนตรคุณ
ภาณุพัฒน์ ชัยวร
อัฐสิษฐ์ ทับทิมแท้
Rajamangala University of Technology Isan. Faculty of Science and Liberal Arts
Silpakorn University Sanam Chandra Palace Campus. Faculty of Education
Sakon Nakhon Rajabhat University. Faculty of Science and Technology
University of Phayao. School of Science
Huachiew Chalermprakiet University. Faculty of Science and Technology
Kasetsart University Chalermphrakiet Sakon Nakhon Province Campus. Faculty of Science and Engineering
Chiang Mai Rajabhat. Department of Physics and General Sciences
Kasetsart University Kamphaeng Saen Campus. Faculty of Liberal Arts and Science
Keywords: Cadmium sulfide thin film
ฟิล์มบางแคดเมียมซัลไฟด์
Thin films
ฟิล์มบาง
Potassium doping
การเติมโพแทสเซียมเจือปน
Sol-gel
โซล-เจล
Mott-Schottky analysis y
การวิเคราะห์แบบ Mott-Schottk
Cadmium sulfide
แคดเมียมซัลไฟด์
Electrochemical Impedance Spectroscopy
สเปกโทรสโกปีอิมพีแดนซ์ทางไฟฟ้าเคมี
วิทยาศาสตร์และเทคโนโลยี
Issue Date: 2026
Citation: Ceramics International 52, 11, Part B, May 2026 : 17905-17924
Abstract: Cadmium sulfide (CdS) thin films, both undoped and doped with various concentrations of potassium (K) (0.1, 0.2, 0.3, 0.4, and 0.5 M), were synthesized on borosilicate glass substrates using the sol-gel screen-printing technique. The results showed that K-doping at concentrations above 0.3 M promoted grain agglomeration, resulting in a compact morphology with no significant voids or porosity across all thin film conditions, indicating strong adherence and coverage between grains and nanoparticles (NPs). X-ray diffraction (XRD) analysis confirmed a hexagonal structure for the undoped and 0.1 M K-doped films; however, this phase disappeared at higher K concentrations. A low-intensity cubic phase was observed across all the samples. These structural observations were further validated using Raman spectroscopy. The evolution of the photoluminescence (PL) peaks with increasing K-doping concentration indicates structural distortions, suggesting that the incorporation of K+ions may introduce new defects or degrade the crystal quality. The presence of Cd-S bonds within the films was validated by Fourier-transform infrared (FTIR) and X-ray photoelectron spectroscopy (XPS). Optical analysis showed low transmittance (0.45 – 1.75%) and reflectance (0.07 – 0.70%) values in the 550 – 1000 nm wavelength range, indicating distinct absorptive behavior. The energy band gap (Eg) decreased from 2.21 eV for the undoped film to 1.92 eV as the K concentration increased up to 0.4 M, then rose slightly to 2.18 eV at 0.5 M doping. Mott-Schottky analysis demonstrated a shift in the conduction band edge from -1.15 V (undoped) to between -0.68 and - 0.99 V (K-doped), along with an increase in donor density from 5.329 × 1020 to 27.156 × 1020 cm3 for the 0.2 M to 0.5 M K-doped films. According to the EIS results, the 0.4 – 0.5 M K-doped CdS thin films induce the generated electrons and exhibit a lower impedance with electron lifetimes due to the higher electrocatalytic activity and faster exciton recombination, causing subsequently degraded more rapidly in electrolyte region. Therefore, the optimal K-doping condition presents a highly promising active electrode material for application in electrochemical systems and other optoelectronic devices.
Description: สามารถเข้าถึงบทควาฉบับเต็ม (Full Text) ได้ที่ : https://www.sciencedirect.com/science/article/abs/pii/S0272884226009272
URI: https://has.hcu.ac.th/xmlui/handle/123456789/5852
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