,比純EA和純Hex制備薄膜分別提升 2 7 % 和 45 % ;同時該薄膜(110)晶面優(yōu)先取向。本實驗的分子動力學(xué)計算結(jié)果表明,當(dāng)溶劑-反溶劑相互作用力為 1 3 8 5 k J / m o l 時,得到最佳鈣鈦礦薄膜。-龍源期刊網(wǎng)" />

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基于綠色反溶劑工程的鈣鈦礦結(jié)晶過程調(diào)控及其機理

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中圖分類號:0482.31 文獻標(biāo)識碼:ADOI:10.37188/CJL.20240201 CSTR:32170.14.CJL.20240201

Regulation of Perovskite Crystallization Processand ItsMechanism Based on Green Anti-solvent Engineering

LIU Zhijun,YANG Ping,KANG Tianli,LIUFengxia,XUXiaofei,LI Zhiyi,WEIWei* (R&DInstituteofFluidandPowderEngineering,DalianUniversityofTechnology,Dalian116O24,China) *Corresponding Author,E-mail:hjweiwei@dlut.edu.cn

Abstract:Ethyl acetate(EA)is commonlyused as a green anti-solvent for the preparation of perovskite films. However,its high polarityleads toan excessvelyfast extractionrate,whichcomplicates thecontrolof the nucleation andcrystallzationprocesss.Inthisstudy,weadjustedtheanti-solventextractionratebyadding n-hexane(Hex)to EA,which alowed to controlthe solution’s supersaturationand achieveadynamicequilibrium in the nucleation and growth processes of the crystals.Additionally,molecular dynamics simulation of the solvent and anti-solvent system was carriedoutusing Materials Studio software,and the interaction energy of the solvent and anti-solvent system was quantitatively calculated.The experimental results show thatthe average grain sizeof the perovskitefilm prepared by (204號 60 % N-Hex(i.e., 60 % molar percentage of Hex in the anti-solvent)is 249 nm,which is 1 7 % and 7 1 % larger than films prepared with pure EA and pure Hex,respectively. The carrier lifetime was 225 ns,which is 2 7 % and 45 % (2號 longerthanthatoffilmsmadewithpureEAandpureHex,respectively.Furthermore,thecrystalplaneof this thin film(110)is the dominant crystal plane.The molecular dynamics calculations of this experiment suggest that the best perovskite film was obtained when the solvent and anti-solvent interaction energy is 1 3 8 5 k J / m o l :

Keywords:perovskite;green;anti-solvent engineering;molecular dynamics

1引言

鈣鈦礦材料具有吸收系數(shù)高、載流子擴散長度長、帶隙可調(diào)等優(yōu)異性能-4],是一種理想的光伏材料,已成功地用作高效光伏電池的光吸收層和電荷分離層。(剩余16376字)

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