Design and fabrication of photovoltaics based on MFS (Ag/BaTiO3/silicon p-type) structure

Materials Science for Energy Technologies - Tập 7 - Trang 29-34 - 2024
Irzaman1, M. Dahrul1, M. Rahmani1, A.M. Rukyati1, Samsidar2, Nurhidayah2, F. Deswardani2, M. Peslinof2, R.P. Jenie3, J. Iskandar4, Y. Wahyuni4, K. Priandana5, R. Siskandar6
1Department of Physics, Faculty of Mathematics and Natural Sciences, IPB University, Bogor 16680, Indonesia
2Department of Physics, Faculty of Sciences and Technology, Jambi University, Jambi 36361, Indonesia
3Department of Nutrition, Faculty of Health Science and Technology, Binawan University, East Jakarta 13630, Indonesia
4Department of Computer Engineering, Pakuan University, Bogor 16142, Indonesia
5Department of Computer Science, IPB University, Bogor 16680, Indonesia
6Computer Engineering Technology Study Program, College of Vocational Studies, IPB University, Bogor, West Java 16151, Indonesia

Tài liệu tham khảo

Irzaman, 2016, Characterization of Ba0.55Sr0.45TiO3 films as light and temperature sensors and its implementation on automatic drying system model, Integr. Ferroelectr., 168, 130, 10.1080/10584587.2016.1159537 Pratheek, 2021, Recent progress on defect passivation in perovskites for solar cell application, Mater. Sci. Energy Technol., 4, 282 Falmbigl, 2017, BaTiO3 thin films from atomic layer deposition: a superlattice approach, J. Phys. Chem. C., 121, 16911, 10.1021/acs.jpcc.7b05633 Karvounis, 2020, Barium titanate nanostructures and thin films for photonics, Adv. Opt. Mater., 8, 1 Wang, 2020, Barium titanate film based fiber optic surface plasmon sensor with high sensitivity, Opt. Laser Technol., 124, 10.1016/j.optlastec.2019.105899 Irzaman, Ridwan Siskandar, Brian Yuliarto, Mochammad Zakki Fahmi, Ferdiansjah, Application of Ba 0 . 5 Sr 0 . 5 TiO 3 (Bst) Film Doped with Arduino Nano-Based Bad Breath Sensor, Chemosensor. 3 (2020) 1–11. Siskandar, 2022, Application of Ba0.5Sr0.5TiO3 (BST) film doped with RuO2 (0%, 2%, 4% and 6%) on a rice-stalk cutting robot model based on a line follower with Hc-05 bluetooth control, Biointerface Res. Appl. Chem., 12, 2138 Zhao, 2020, Colorimetric biosensors for point-of-care virus detections, Mater. Sci. Energy Technol., 3, 237 Irzaman, R. Siskandar, R.P. Jenie, H. Syafutra, M. Iqbal, B. Yuliarto, M.Z. Fahmi, Ferdiansjah, Khairurrijal, Ferroelectric sensor BaxSr1-xTiO3 integrated with android smartphone for controlling and monitoring smart street lighting, J. King Saud Univ. - Sci. 34 (2022) 102180. doi: 10.1016/j.jksus.2022.102180. Siskandar, 2023, Thin film potential Ba0.5Sr0.5 TiO3 (BST) doped with RuO2 6% as a light detecting sensor at solar tracker ALSINTAN system in microcontroller-based, Biointerface Res. Appl. Chem., 13, 1 Konsago, 2022, Chemical solution deposition of barium titanate thin films with ethylene glycol as solvent for barium acetate, Molecules, 27, 3753, 10.3390/molecules27123753 Gudkov, 2020, Electrical conductivity of lithium tantalate thin film, Ceramica, 66, 291, 10.1590/0366-69132020663792885 Moreira Ficanha, 2020, Immobilization of Candida antarctica B (CALB) in silica aerogel: morphological characteristics and stability, Biointerface Res. Appl. Chem., 10, 6744, 10.33263/BRIAC106.67446756 Swamy, 2020, Electrochemical detection of dopamine and tyrosine using metal oxide (MO, M=Cu and Ni) modified graphite electrode: a comparative study, Biointerface Res. Appl. Chem., 10, 6460, 10.33263/BRIAC105.64606473 Ranjitha, 2019, Effect of doped TiO2 film as electron transport layer for inverted organic solar cell, Mater. Sci. Energy Technol., 2, 385 Bintari, 2020, Effect of light intensity on magnetic properties of srtio3 thin-films, Key Eng. Mater., 855 KEM, 208, 10.4028/www.scientific.net/KEM.855.208 Tang, 2022, Chemical solution deposition of epitaxial indium- and aluminum-doped Ga2O3 thin films on sapphire with tunable bandgaps, J. Eur. Ceram. Soc., 42, 175, 10.1016/j.jeurceramsoc.2021.09.064 Iriani, 2020, The effect of mole concentrations of Sr-doped of BAI. X Sr x TiO3 film on microstructure, optical, and electrical properties, AIP Conf. Proc., 2296, 10.1063/5.0032543 Setiawan, 2020, Optical characterization of Ba0.5Sr0.5TiO3 material grown on a p-type silicon substrate (111) doped niobium oxide and chlorophyll, Ferroelectrics, 568, 62, 10.1080/00150193.2020.1735893 Elazab, 2020, Synthesis and characterization of PVP based catalysts for selected application in catalysis, Biointerface Res. Appl. Chem., 10, 5209, 10.33263/BRIAC102.209216 Droepenu, 2020, Synthesis and characterization of single phase ZnO nanostructures via solvothermal method: influence of alkaline source, Biointerface Res. Appl. Chem., 10, 5648, 10.33263/BRIAC103.648655 Tripathy, 2020, Optical, structural, and antimicrobial study of gold nanoparticles synthesized using an aqueous extract of Mimusops elengi raw fruits, Biointerface Res. Appl. Chem., 10, 7085, 10.33263/BRIAC106.70857096 Massit, 2020, Thermal behavior of Mg-doped calcium-deficient apatite and stabilization of beta tricalcium phosphate, Biointerface Res. Appl. Chem., 10, 6837, 10.33263/BRIAC106.68376845 Hamdani, 2019, A synthesis of BaXSr1-xTiO3 film and characterization of ferroelectric properties and its extension as random access memory, Mater. Phys. Mech., 42, 131 Rajvee, 2021, Synthesis and analysis of zirconium titanate thin films by using sol-gel method, Biointerface Res. Appl. Chem., 11, 12761, 10.33263/BRIAC115.1276112768 Bakil, 2020, Sodium alginate-zinc oxide nanocomposite film for antibacterial wound healing applications, Biointerface Res. Appl. Chem., 10, 6289 Liu, 2022, Effects of annealing temperature on electrical properties of ZnO thin-film transistors, Nanomaterials., 12, 1 D.Q.G. Ds, D. Rq, Q. Gmrkdq, X. Df, The Optical Band Gap Based on K-M Function on Layer of LiTaO3 with Variation Treatment of Annealing Temperature, 7 (n.d.) 7–10. V.N. Vikash Mishra, Aanchal Sati, M. Kamal Warshi, Ambadas B. Phatangare, Sanjay Dhole, R.K. and P.R. Bhoraskar, Harnath Ghosh, Archna Sagdeo, Vinayak Mishra, 9, Sagdeo, Effect of electron irradiation on the optical properties of SrTiO3: An experimental and theoretical investigations, (2018). Kurniawan, 2020, Application of barium strontium titanate (BST) as a light sensor on led lights, Ferroelectrics, 554, 160, 10.1080/00150193.2019.1684758 Abdelghany, 2020, Antibacterial and energy gap correlation of PVA/SA biofilms doped with selenium nanoparticles, Biointerface Res. Appl. Chem., 10, 6280 Thakre, 2017, Enhanced bipolar resistive switching behavior in polar Cr-doped barium titanate thin films without electro-forming process, AIP Adv., 7, 10.1063/1.5004232 Auromun, 2020, Structural, dielectric and electrical investigation of zirconium and tin modified 0.5BFO-0.5BST, Mater. Chem. Phys., 250, 10.1016/j.matchemphys.2020.123033 A. Ismangil, W.G. Prakoso, The Effect of Electrical Conductivity of LiTaO 3 Thin film to Temperature Variations, 29 (2020) 3234–3240. Irzaman, 2018, Application of lithium tantalate (LiTaO3) films as light sensor to monitor the light status in the Arduino Uno based energy-saving automatic light prototype and passive infrared sensor, Ferroelectrics, 524, 44, 10.1080/00150193.2018.1432842