Matches in SemOpenAlex for { <https://semopenalex.org/work/W2789872407> ?p ?o ?g. }
- W2789872407 endingPage "97" @default.
- W2789872407 startingPage "90" @default.
- W2789872407 abstract "Photovoltaic (PV) electric power generation has the potential to account for a major portion of power generation in the global power market. Currently, the PV market is dominated by crystalline silicon (c-Si) solar cells which accounts for more than 80% of the share. Lower cost, optimized process parameters and improved PV cell efficiencies are required to reduce the overall cost per watt peak (W). In this regard, PV cell manufacturers are currently adopting thinner wafers, which tends to increase the surface recombination velocity (SRV). Excellent surface passivation at the front and rear of the PV cell becomes imperative for realizing superior efficienciy on c-Si substrates. In this article, our focus is to discuss the role of the surface passivation process for improving the PV cell efficiency. The fundamentals and strategies to improve the surface passivation for c-Si solar cells are discussed. Surface passivation schemes and materials with the ability to offer field effect passivation with dielectric charges (positive/negative) present in the passivation films were reviewed. Moreover, we discuss the use of a thin-dielectric passivation layer with a properly selected work function and band offsets for tunneling contacts, facilitating a higher efficiency potential. Finaly, the front/rear surface passivation schemes required for thinner wafers to maintain higher bulk lifetime and higher efficiencies for c-Si solar cells are presented." @default.
- W2789872407 created "2018-03-29" @default.
- W2789872407 creator A5000639672 @default.
- W2789872407 creator A5001643289 @default.
- W2789872407 creator A5015504249 @default.
- W2789872407 creator A5031275376 @default.
- W2789872407 creator A5031747057 @default.
- W2789872407 creator A5036505076 @default.
- W2789872407 creator A5073861251 @default.
- W2789872407 creator A5087546184 @default.
- W2789872407 date "2018-05-01" @default.
- W2789872407 modified "2023-10-01" @default.
- W2789872407 title "Development and prospects of surface passivation schemes for high-efficiency c-Si solar cells" @default.
- W2789872407 cites W1510050845 @default.
- W2789872407 cites W1614676509 @default.
- W2789872407 cites W1653224167 @default.
- W2789872407 cites W1655635229 @default.
- W2789872407 cites W1678538889 @default.
- W2789872407 cites W1876525337 @default.
- W2789872407 cites W1977053792 @default.
- W2789872407 cites W1989807972 @default.
- W2789872407 cites W1991331106 @default.
- W2789872407 cites W1991770261 @default.
- W2789872407 cites W1994653731 @default.
- W2789872407 cites W1996005286 @default.
- W2789872407 cites W1998972462 @default.
- W2789872407 cites W2002300630 @default.
- W2789872407 cites W2004423132 @default.
- W2789872407 cites W2005101278 @default.
- W2789872407 cites W2008860786 @default.
- W2789872407 cites W2015291332 @default.
- W2789872407 cites W2019267643 @default.
- W2789872407 cites W2020917858 @default.
- W2789872407 cites W2022609099 @default.
- W2789872407 cites W2023779605 @default.
- W2789872407 cites W2024275783 @default.
- W2789872407 cites W2026534481 @default.
- W2789872407 cites W2026655406 @default.
- W2789872407 cites W2026854929 @default.
- W2789872407 cites W2028083110 @default.
- W2789872407 cites W2031801221 @default.
- W2789872407 cites W2033193531 @default.
- W2789872407 cites W2038778457 @default.
- W2789872407 cites W2038787762 @default.
- W2789872407 cites W2042271251 @default.
- W2789872407 cites W2043184362 @default.
- W2789872407 cites W2045479671 @default.
- W2789872407 cites W2074166993 @default.
- W2789872407 cites W2075978509 @default.
- W2789872407 cites W2078033068 @default.
- W2789872407 cites W2078845761 @default.
- W2789872407 cites W2078955342 @default.
- W2789872407 cites W2080143560 @default.
- W2789872407 cites W2080574855 @default.
- W2789872407 cites W2083005610 @default.
- W2789872407 cites W2090759622 @default.
- W2789872407 cites W2095710757 @default.
- W2789872407 cites W2118725784 @default.
- W2789872407 cites W2121699455 @default.
- W2789872407 cites W2126808884 @default.
- W2789872407 cites W2133882917 @default.
- W2789872407 cites W2135796605 @default.
- W2789872407 cites W2139180413 @default.
- W2789872407 cites W2153197854 @default.
- W2789872407 cites W2153332554 @default.
- W2789872407 cites W2154027555 @default.
- W2789872407 cites W2155383220 @default.
- W2789872407 cites W2160724514 @default.
- W2789872407 cites W2162022049 @default.
- W2789872407 cites W2163613573 @default.
- W2789872407 cites W2164631897 @default.
- W2789872407 cites W2164875540 @default.
- W2789872407 cites W2166519846 @default.
- W2789872407 cites W2166877391 @default.
- W2789872407 cites W2167021774 @default.
- W2789872407 cites W2324925042 @default.
- W2789872407 cites W2328365790 @default.
- W2789872407 cites W2337473073 @default.
- W2789872407 cites W2346325113 @default.
- W2789872407 cites W2404374515 @default.
- W2789872407 cites W2464447748 @default.
- W2789872407 cites W2510486086 @default.
- W2789872407 cites W2564685955 @default.
- W2789872407 cites W4251614390 @default.
- W2789872407 doi "https://doi.org/10.1016/j.solener.2018.03.025" @default.
- W2789872407 hasPublicationYear "2018" @default.
- W2789872407 type Work @default.
- W2789872407 sameAs 2789872407 @default.
- W2789872407 citedByCount "22" @default.
- W2789872407 countsByYear W27898724072018 @default.
- W2789872407 countsByYear W27898724072019 @default.
- W2789872407 countsByYear W27898724072020 @default.
- W2789872407 countsByYear W27898724072021 @default.
- W2789872407 countsByYear W27898724072022 @default.
- W2789872407 countsByYear W27898724072023 @default.
- W2789872407 crossrefType "journal-article" @default.
- W2789872407 hasAuthorship W2789872407A5000639672 @default.
- W2789872407 hasAuthorship W2789872407A5001643289 @default.