Kuddus Sheikh Md Abdul, Maddalena Francesco, Kowal Dominik, Makowski Michal, Mahato Somnath, Jȩdrzejewski Roman, Bhattarai Romakanta, Witkowski Marcin Eugeniusz, Drozdowski Konrad Jacek, Drozdowski Winicjusz, Dang Cuong, Rhone Trevor David, Birowosuto Muhammad Danang
Łukasiewicz Research Network-PORT Polish Center for Technology Development, Stabłowicka 147, Wrocław 54-066, Poland.
School of Electrical and Electronic Engineering, Nanyang Technological University, 50 Nanyang Avenue, 639798 Singapore, Singapore.
ACS Appl Mater Interfaces. 2024 May 15;16(19):25529-25539. doi: 10.1021/acsami.4c01741. Epub 2024 May 3.
Two-dimensional (2D) hybrid organic-inorganic perovskite (HOIP) crystals show promise as scintillating materials for wide-energy radiation detection, outperforming their three-dimensional counterparts. In this study, we synthesized single crystals of (PEABZA)PbBr ( ranging from 0.1 to 2), utilizing phenethylammonium (CHCHCHNH) and benzylammonium (CHCHNH) cations. These materials exhibit favorable optical and scintillation properties, rendering them suitable for high light yield (LY) and fast-response scintillators. Our investigation, employing various techniques such as X-ray diffraction (XRD), photoluminescence (PL), time-resolved (TR) PL, Raman spectroscopy, radioluminescence (RL), thermoluminescence (TL), and scintillation measurements, unveiled lattice strain induced by dual-organic cations in powder X-ray diffraction. Density functional theory analysis demonstrated a maximal 0.13 eV increase in the band gap with the addition of BZA cation addition. Notably, the largest Stokes shift of 0.06 eV was observed in (BZA)PbBr. The dual-organic cation crystals displayed >80% fast component scintillation decay time, which is advantageous for the scintillating process. Furthermore, we observed a dual-organic cations-induced enhancement of electron-hole transfer efficiency by up to 60%, with a contribution of >70% to the fast component of scintillation decay. The crystal with the lowest BZA concentration, (PEABZA)PbBr, demonstrated the highest LYs of 14.9 ± 1.5 ph/keV at room temperature. Despite a 55-70% decrease in LY for BZA concentrations >5%, simultaneous reductions in scintillation decay time (12-32%) may work for time-of-flight positron emission tomography and photon-counting computed tomography. Our work underscores the crucial role of dual-organic cations in advancing our understanding of 2D-HOIP crystals for materials science and radiation detection applications.
二维(2D)有机-无机杂化钙钛矿(HOIP)晶体作为用于宽能辐射探测的闪烁材料展现出了潜力,其性能优于三维同类晶体。在本研究中,我们利用苯乙铵(CHCHCHNH)和苄基铵(CHCHNH)阳离子合成了(PEABZA)PbBr(范围为0.1至2)的单晶。这些材料具有良好的光学和闪烁特性,使其适用于高光产额(LY)和快速响应的闪烁体。我们的研究采用了多种技术,如X射线衍射(XRD)、光致发光(PL)、时间分辨(TR)PL、拉曼光谱、辐射发光(RL)、热释光(TL)和闪烁测量,揭示了粉末X射线衍射中双有机阳离子引起的晶格应变。密度泛函理论分析表明,添加BZA阳离子后带隙最大增加0.13 eV。值得注意的是,在(BZA)PbBr中观察到了最大0.06 eV的斯托克斯位移。双有机阳离子晶体显示出>80%的快速成分闪烁衰减时间,这对闪烁过程有利。此外,我们观察到双有机阳离子使电子-空穴转移效率提高了高达60%,对闪烁衰减的快速成分贡献>70%。BZA浓度最低的晶体(PEABZA)PbBr在室温下表现出最高的LYs,为14.9±1.5 ph/keV。尽管BZA浓度>5%时LY下降了55-70%,但闪烁衰减时间同时减少(12-32%)可能适用于飞行时间正电子发射断层扫描和光子计数计算机断层扫描。我们的工作强调了双有机阳离子在推进我们对用于材料科学和辐射探测应用的2D-HOIP晶体的理解方面的关键作用。