Mrinmoy Dey, Md Fahim Shahriar, A. Ali, Maitry Dey, N. K. Das
{"title":"含硫化锡BSF的高效二硫化钼太阳能电池的设计与优化","authors":"Mrinmoy Dey, Md Fahim Shahriar, A. Ali, Maitry Dey, N. K. Das","doi":"10.1109/ECACE.2019.8679178","DOIUrl":null,"url":null,"abstract":"Two-dimensional molybdenum disulfide (MOS<inf>2</inf>) is a potential sunlight harvester due to low cost, layered type atomic structure, favorable electrical and optical properties. The performance of a molybdenum disulfide (MOS<inf>2</inf>) photovoltaic cell is investigated by using the wxAMPS simulator. The hidden potentiality of Mos2is unfolded by using BSF strategy. The photoconversion efficiency is found 21.39% <tex>$(\\pmb{J_{sc}}=\\pmb{29.89}\\ \\mathbf{mA}/\\mathbf{cm}^{\\pmb{2}},\\pmb{V_{oc}=0.841}\\mathbf{V}$</tex> and <tex>$\\mathbf{FF}=\\pmb{0.856}$</tex>) for <tex>$\\mathbf{r}\\ \\ \\pmb{1}\\ \\ \\pmb{\\mu} \\mathbf{m\\ MoS}_{\\pmb{2}}$</tex> absorber layer with 100 nm SnS BSF whereas in conventional structure, it is found 19.48% <tex>$(\\pmb{V_{oc}=0.826}\\mathbf{V}, \\pmb{J_{sc}}=\\pmb{27.848}\\ \\ \\mathbf{mA}/\\mathbf{cm}^{\\pmb{2}}$</tex>, and <tex>$\\mathbf{FF}=\\pmb{0.846)}$</tex> without BSF for 1 <tex>$\\pmb{\\mu} \\mathbf{m\\ MoS}_{\\pmb{2}}$</tex> absorber layer. The measured temperature coefficient (TC) is <tex>$\\pmb{-0.047\\%/}^{\\circ}\\mathbf{C}$</tex> for conventional photovoltaic cell structure and −0.046<sup>%</sup>/°C for a modified structure with SnS BSF. It indicates the better thermal stability of the modified structure compared to the conventional structure.","PeriodicalId":226060,"journal":{"name":"2019 International Conference on Electrical, Computer and Communication Engineering (ECCE)","volume":"12 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2019-02-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"3","resultStr":"{\"title\":\"Design and Optimization of an Efficient Molybdenum Disulfide (MoS2) Solar cell with Tin Sulfide BSF\",\"authors\":\"Mrinmoy Dey, Md Fahim Shahriar, A. Ali, Maitry Dey, N. K. Das\",\"doi\":\"10.1109/ECACE.2019.8679178\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"Two-dimensional molybdenum disulfide (MOS<inf>2</inf>) is a potential sunlight harvester due to low cost, layered type atomic structure, favorable electrical and optical properties. The performance of a molybdenum disulfide (MOS<inf>2</inf>) photovoltaic cell is investigated by using the wxAMPS simulator. The hidden potentiality of Mos2is unfolded by using BSF strategy. The photoconversion efficiency is found 21.39% <tex>$(\\\\pmb{J_{sc}}=\\\\pmb{29.89}\\\\ \\\\mathbf{mA}/\\\\mathbf{cm}^{\\\\pmb{2}},\\\\pmb{V_{oc}=0.841}\\\\mathbf{V}$</tex> and <tex>$\\\\mathbf{FF}=\\\\pmb{0.856}$</tex>) for <tex>$\\\\mathbf{r}\\\\ \\\\ \\\\pmb{1}\\\\ \\\\ \\\\pmb{\\\\mu} \\\\mathbf{m\\\\ MoS}_{\\\\pmb{2}}$</tex> absorber layer with 100 nm SnS BSF whereas in conventional structure, it is found 19.48% <tex>$(\\\\pmb{V_{oc}=0.826}\\\\mathbf{V}, \\\\pmb{J_{sc}}=\\\\pmb{27.848}\\\\ \\\\ \\\\mathbf{mA}/\\\\mathbf{cm}^{\\\\pmb{2}}$</tex>, and <tex>$\\\\mathbf{FF}=\\\\pmb{0.846)}$</tex> without BSF for 1 <tex>$\\\\pmb{\\\\mu} \\\\mathbf{m\\\\ MoS}_{\\\\pmb{2}}$</tex> absorber layer. The measured temperature coefficient (TC) is <tex>$\\\\pmb{-0.047\\\\%/}^{\\\\circ}\\\\mathbf{C}$</tex> for conventional photovoltaic cell structure and −0.046<sup>%</sup>/°C for a modified structure with SnS BSF. It indicates the better thermal stability of the modified structure compared to the conventional structure.\",\"PeriodicalId\":226060,\"journal\":{\"name\":\"2019 International Conference on Electrical, Computer and Communication Engineering (ECCE)\",\"volume\":\"12 1\",\"pages\":\"0\"},\"PeriodicalIF\":0.0000,\"publicationDate\":\"2019-02-01\",\"publicationTypes\":\"Journal Article\",\"fieldsOfStudy\":null,\"isOpenAccess\":false,\"openAccessPdf\":\"\",\"citationCount\":\"3\",\"resultStr\":null,\"platform\":\"Semanticscholar\",\"paperid\":null,\"PeriodicalName\":\"2019 International Conference on Electrical, Computer and Communication Engineering (ECCE)\",\"FirstCategoryId\":\"1085\",\"ListUrlMain\":\"https://doi.org/10.1109/ECACE.2019.8679178\",\"RegionNum\":0,\"RegionCategory\":null,\"ArticlePicture\":[],\"TitleCN\":null,\"AbstractTextCN\":null,\"PMCID\":null,\"EPubDate\":\"\",\"PubModel\":\"\",\"JCR\":\"\",\"JCRName\":\"\",\"Score\":null,\"Total\":0}","platform":"Semanticscholar","paperid":null,"PeriodicalName":"2019 International Conference on Electrical, Computer and Communication Engineering (ECCE)","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.1109/ECACE.2019.8679178","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
Design and Optimization of an Efficient Molybdenum Disulfide (MoS2) Solar cell with Tin Sulfide BSF
Two-dimensional molybdenum disulfide (MOS2) is a potential sunlight harvester due to low cost, layered type atomic structure, favorable electrical and optical properties. The performance of a molybdenum disulfide (MOS2) photovoltaic cell is investigated by using the wxAMPS simulator. The hidden potentiality of Mos2is unfolded by using BSF strategy. The photoconversion efficiency is found 21.39% $(\pmb{J_{sc}}=\pmb{29.89}\ \mathbf{mA}/\mathbf{cm}^{\pmb{2}},\pmb{V_{oc}=0.841}\mathbf{V}$ and $\mathbf{FF}=\pmb{0.856}$) for $\mathbf{r}\ \ \pmb{1}\ \ \pmb{\mu} \mathbf{m\ MoS}_{\pmb{2}}$ absorber layer with 100 nm SnS BSF whereas in conventional structure, it is found 19.48% $(\pmb{V_{oc}=0.826}\mathbf{V}, \pmb{J_{sc}}=\pmb{27.848}\ \ \mathbf{mA}/\mathbf{cm}^{\pmb{2}}$, and $\mathbf{FF}=\pmb{0.846)}$ without BSF for 1 $\pmb{\mu} \mathbf{m\ MoS}_{\pmb{2}}$ absorber layer. The measured temperature coefficient (TC) is $\pmb{-0.047\%/}^{\circ}\mathbf{C}$ for conventional photovoltaic cell structure and −0.046%/°C for a modified structure with SnS BSF. It indicates the better thermal stability of the modified structure compared to the conventional structure.