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用松油醇/聚乙二醇基纳米流体制备纳米结构的锡/钛氧化物混合薄膜:在钙钛矿太阳能电池中的应用

Preparation of Nanostructured Sn/Ti Oxide Hybrid Films with Terpineol/PEG-Based Nanofluids: Perovskite Solar Cell Applications.

作者信息

Vafaei Saeid, Boddu Vamsi Krishna, Jala Stephen, Bezawada Pavan Kumar, Hattori Nagisa, Higashi Seiho, Sugiura Takashi, Manseki Kazuhiro

机构信息

Mechanical Engineering Department, Bradley University, 1501 West Bradley Avenue, Peoria, IL 61625, USA.

Industrial and Manufacturing Engineering and Technology Department, Bradley University, 1501 West Bradley Avenue, Peoria, IL 61625, USA.

出版信息

Materials (Basel). 2023 Apr 16;16(8):3136. doi: 10.3390/ma16083136.

Abstract

Tin oxide (SnO) and titanium dioxide (TiO) are recognized as attractive energy materials applicable for lead halide perovskite solar cells (PSCs). Sintering is one of the effective strategies for improving the carrier transport of semiconductor nanomaterials. Using the alternative metal-oxide-based ETL, nanoparticles are often used in a way that they are dispersed in a precursor liquid prior to their thin-film deposition. Currently, the creation of PSCs using nanostructured Sn/Ti oxide thin-film ETL is one of the topical issues for the development of high-efficiency PSCs. Here, we demonstrate the preparation of terpineol/PEG-based fluid containing both tin and titanium compounds that can be utilized for the formation of a hybrid Sn/Ti oxide ETL on a conductive substrate (F-doped SnO glass substrate: FTO). We also pay attention to the structural analysis of the Sn/Ti metal oxide formation at the nanoscale using a high-resolution transmission electron microscope (HR-TEM). The variation of the nanofluid composition, i.e., the concentration of tin and titanium sources, was examined to obtain a uniform transparent thin film by spin-coating and sintering processes. The maximum power conversion efficiency was obtained for the concentration condition of [SnCl·2HO]/[titanium tetraisopropoxide (TTIP)] = 25:75 in the terpineol/PEG-based precursor solution. Our method for preparing the ETL nanomaterials provides useful guidance for the creation of high-performance PSCs using the sintering method.

摘要

氧化锡(SnO)和二氧化钛(TiO)被认为是适用于卤化铅钙钛矿太阳能电池(PSC)的有吸引力的能量材料。烧结是改善半导体纳米材料载流子传输的有效策略之一。使用基于替代金属氧化物的电子传输层(ETL)时,纳米颗粒通常以在薄膜沉积之前分散在前驱体液体中的方式使用。目前,使用纳米结构的Sn/Ti氧化物薄膜ETL制造PSC是高效PSC发展的热门问题之一。在此,我们展示了一种制备基于松油醇/聚乙二醇(PEG)的流体的方法,该流体含有锡和钛化合物,可用于在导电基板(F掺杂的SnO玻璃基板:FTO)上形成混合Sn/Ti氧化物ETL。我们还关注使用高分辨率透射电子显微镜(HR-TEM)对纳米级Sn/Ti金属氧化物形成的结构分析。通过旋涂和烧结工艺,研究了纳米流体组成的变化,即锡和钛源的浓度,以获得均匀的透明薄膜。在基于松油醇/PEG的前驱体溶液中,当[SnCl·2HO]/[四异丙醇钛(TTIP)]=25:75的浓度条件下,获得了最大功率转换效率。我们制备ETL纳米材料的方法为使用烧结法制造高性能PSC提供了有用的指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce23/10140960/26f6623a6c2a/materials-16-03136-g001.jpg

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