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在塑料基板上印刷制备柔性(001)取向的PZT薄膜。

Printing Formation of Flexible (001)-Oriented PZT Films on Plastic Substrates.

作者信息

Nakajima Tomohiko, Kitanaka Yuuki

机构信息

Advanced Manufacturing Research Institute, National Institute of Advanced Industrial Science and Technology, Ibaraki 305-8565, Japan.

出版信息

Materials (Basel). 2023 Mar 6;16(5):2116. doi: 10.3390/ma16052116.

Abstract

High-quality, uniaxially oriented, and flexible PbZrTiO (PZT) films were fabricated on flexible RbLaNbO/BaTiO (RLNO/BTO)-coated polyimide (PI) substrates. All layers were fabricated by a photo-assisted chemical solution deposition (PCSD) process using KrF laser irradiation for photocrystallization of the printed precursors. The Dion-Jacobson perovskite RLNO thin films on flexible PI sheets were employed as seed layers for the uniaxially oriented growth of PZT films. To obtain the uniaxially oriented RLNO seed layer, a BTO nanoparticle-dispersion interlayer was fabricated to avoid PI substrate surface damage under excess photothermal heating, and the RLNO has been orientedly grown only at around 40 mJ·cm at 300 °C. The prepared RLNO seed layer on the BTO/PI substrate showed very high (010)-oriented growth with a very high Lotgering factor ((010) = 1.0). By using the flexible (010)-oriented RLNO film on BTO/PI, PZT film crystal growth was possible via KrF laser irradiation of a sol-gel-derived precursor film at 50 mJ·cm at 300 °C. The obtained PZT film showed highly (001)-oriented growth on the flexible plastic substrates with (001) = 0.92 without any micro-cracks. The RLNO was only uniaxial-oriented grown at the top part of the RLNO amorphous precursor layer. The oriented grown and amorphous phases of RLNO would have two important roles for this multilayered film formation: (1) triggering orientation growth of the PZT film at the top and (2) the stress relaxation of the underneath BTO layer to suppress the micro-crack formation. This is the first time that PZT films have been crystallized directly on flexible substrates. The combined processes of photocrystallization and chemical solution deposition are a cost-effective and highly on-demand process for the fabrication of flexible devices.

摘要

在柔性铷镧铌酸盐/钛酸钡(RLNO/BTO)涂层聚酰亚胺(PI)衬底上制备了高质量、单轴取向且柔性的锆钛酸铅(PZT)薄膜。所有层均通过光辅助化学溶液沉积(PCSD)工艺制备,使用KrF激光辐照使印刷前驱体光结晶。柔性PI片材上的狄龙 - 雅各布森钙钛矿RLNO薄膜用作PZT薄膜单轴取向生长的籽晶层。为了获得单轴取向的RLNO籽晶层,制备了BTO纳米颗粒分散中间层,以避免在过度光热加热下PI衬底表面受损,并且RLNO仅在300°C下约40 mJ·cm²的能量密度下取向生长。在BTO/PI衬底上制备的RLNO籽晶层显示出非常高的(010)取向生长,洛特林因子非常高((010) = 1.0)。通过在BTO/PI上使用柔性(010)取向的RLNO薄膜,在300°C下以50 mJ·cm²的能量密度对溶胶 - 凝胶衍生的前驱体薄膜进行KrF激光辐照,使得PZT薄膜晶体生长成为可能。所获得的PZT薄膜在柔性塑料衬底上显示出高度的(001)取向生长,(001) = 0.92,且无任何微裂纹。RLNO仅在RLNO非晶前驱体层顶部单轴取向生长。RLNO的取向生长和非晶相对于这种多层膜的形成具有两个重要作用:(1)触发顶部PZT薄膜的取向生长;(2)缓解下方BTO层的应力以抑制微裂纹形成。这是首次在柔性衬底上直接使PZT薄膜结晶。光结晶和化学溶液沉积的组合工艺是制造柔性器件的一种经济高效且需求旺盛的工艺。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2998/10003879/32aa6db04787/materials-16-02116-g001.jpg

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