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Fluorene- and fluorenone-based molecules as electron-transporting SAMs for photovoltaic devices.

Lauryna Monika SvirskaiteErnestas KasparavičiusMatas SteponaitisRaitis GrzibovskisMarius FranckevičiusAtanas KaterskiArnas NaujokaitisSmagul KarazhanovSajeesh Vadakkedath GopiArturs AizstrautsAivars VembrisVytautas GetautisTadas Malinauskas
Published in: RSC advances (2024)
New semiconductors containing fluorene or fluorenone central fragments along with phosphonic acid anchoring groups were synthesized and investigated as electron transporting materials for possible application in photovoltaic devices. These derivatives demonstrate good thermal stability and suitable electrochemical properties for effective electron transport from perovskite, Sb 2 S 3 and Sb 2 Se 3 absorber layers. Self-assembled fluorene and fluorenone electron-transporting materials have shown improved substrate wettability, indicating bond formation between monolayer-forming compounds and the ITO, TiO 2 , Sb 2 S 3 , or Sb 2 Se 3 surface. Additionally, investigated materials have compatible energetic band alignment and can passivate perovskite interface defects, which makes them interesting candidates for application in the n-i-p structure perovskite solar cell.
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