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華南師范大學(xué)高進(jìn)偉教授團(tuán)隊(duì) Small:超分子聚氨酯動(dòng)態(tài)“韌帶”增強(qiáng)鈣鈦礦薄膜機(jī)械柔性自愈合能力
2023-10-23  來源:高分子科技

  具有重量輕、成本低、易于集成的柔性鈣鈦礦太陽電池(F-PSCs)有希望補(bǔ)足傳統(tǒng)剛性硅太陽電池的應(yīng)用領(lǐng)域,如建筑一體化光伏、可穿戴和便攜式電子設(shè)備等。然而,由于鈣鈦礦薄膜固有的脆性和由此引起的韌性斷裂所導(dǎo)致的機(jī)械穩(wěn)定性問題嚴(yán)重限制了F-PSC的光伏性能和壽命。因此,解決F-PSCs的機(jī)械穩(wěn)定性是其實(shí)現(xiàn)商業(yè)化的基礎(chǔ)。


  近日,華南師范大學(xué)高進(jìn)偉/姜月團(tuán)隊(duì)通過將超分子PDMS聚氨酯(DSSP-PPU)組成的動(dòng)態(tài)“韌帶”引入鈣鈦礦太陽電池的晶界,促進(jìn)殘余應(yīng)力的釋放和晶界的軟化。此外,這種動(dòng)態(tài)“韌帶”表現(xiàn)出優(yōu)異的自愈合特性,能夠在室溫下愈合鈣鈦礦薄膜中的裂紋。所獲得的鈣鈦礦太陽電池對(duì)于剛性襯底和柔性襯底分別實(shí)現(xiàn)了23.73%22.24%的功率轉(zhuǎn)換效率,對(duì)于柔性微型模塊也實(shí)現(xiàn)了17.32%的功率轉(zhuǎn)換效率。值得注意的是,在F-PSCs經(jīng)受8000次彎曲循環(huán)(r = 2 mm)后,F-PSCs仍保持其初始效率的近80%,并且通過室溫自愈合過程進(jìn)一步恢復(fù)至初始效率的近90%。柔性和自愈合“韌帶”策略為提高 F-PSC 的耐用性和性能提供了一種簡(jiǎn)單而有效的解決方案并促進(jìn)F-PSC的商業(yè)應(yīng)用。 


Figure 1. a) Chemical structure of PDMS-PPU. b) Top-view (upper row) and cross-sectional (lower row) SEM images of perovskite films on SnO2/ITO with variable concentration of DSSP-PPU. Scale bars: 500 nm. c) XRD spectra of perovskite films with and without DSSP-PPU. d) HR-TEM of perovskite with DSSP-PPU, the right panels showing the enlarged regions of “1 and 2.” e) GIXRD with different instrumental ψ values (0°–50°) for perovskite with and without DSSP-PPU. f) Linear fit of 2θ-sin2ψ for perovskite with and without DSSP-PPU. 


Figure 2. a) Chemical structure of PDMS-PPU. b) Top-view (upper row) and cross-sectional (lower row) SEM images of perovskite films on SnO2/ITO with variable concentration of DSSP-PPU. Scale bars: 500 nm. c) XRD spectra of perovskite films with and without DSSP-PPU. d) HR-TEM of perovskite with DSSP-PPU, the right panels showing the enlarged regions of “1 and 2.” e) GIXRD with different instrumental ψ values (0°–50°) for perovskite with and without DSSP-PPU. f) Linear fit of 2θ-sin2ψ for perovskite with and without DSSP-PPU. 


Figure 3. a) Chemical structure of PDMS-PPU. b) Top-view (upper row) and cross-sectional (lower row) SEM images of perovskite films on SnO2/ITO with variable concentration of DSSP-PPU. Scale bars: 500 nm. c) XRD spectra of perovskite films with and without DSSP-PPU. d) HR-TEM of perovskite with DSSP-PPU, the right panels showing the enlarged regions of “1 and 2.” e) GIXRD with different instrumental ψ values (0°–50°) for perovskite with and without DSSP-PPU. f) Linear fit of 2θ-sin2ψ for perovskite with and without DSSP-PPU. 


Figure 4. a) Chemical structure of PDMS-PPU. b) Top-view (upper row) and cross-sectional (lower row) SEM images of perovskite films on SnO2/ITO with variable concentration of DSSP-PPU. Scale bars: 500 nm. c) XRD spectra of perovskite films with and without DSSP-PPU. d) HR-TEM of perovskite with DSSP-PPU, the right panels showing the enlarged regions of “1 and 2.” e) GIXRD with different instrumental ψ values (0°–50°) for perovskite with and without DSSP-PPU. f) Linear fit of 2θ-sin2ψ for perovskite with and without DSSP-PPU. 


Figure 5. a) Chemical structure of PDMS-PPU. b) Top-view (upper row) and cross-sectional (lower row) SEM images of perovskite films on SnO2/ITO with variable concentration of DSSP-PPU. Scale bars: 500 nm. c) XRD spectra of perovskite films with and without DSSP-PPU. d) HR-TEM of perovskite with DSSP-PPU, the right panels showing the enlarged regions of “1 and 2.” e) GIXRD with different instrumental ψ values (0°–50°) for perovskite with and without DSSP-PPU. f) Linear fit of 2θ-sin2ψ for perovskite with and without DSSP-PPU.


  華南師范大學(xué)姜月副研究員和高進(jìn)偉教授為論文的通訊作者,華南師范大學(xué)博士研究生楊正池為論文第一作者。感謝國(guó)家自然科學(xué)基金(No. 62105124,)廣東省基礎(chǔ)與應(yīng)用基礎(chǔ)研究基金(No. 2022B1515120006, 2022A1515010264)等對(duì)本文的資助。相關(guān)成果以Supramolecular polyurethane "Ligaments" Enabling Room-Temperature Self-Healing Flexible Perovskite Solar Cells and Mini-modules"為題發(fā)表在期刊Small上。


  原文鏈接: https://doi.org/10.1002/smll.202307186

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