Ghoshal Tandra, Thorat Atul, Prochukhan Nadezda, Morris Michael A
School of Chemistry, AMBER and CRANN, Trinity College Dublin, D02 AK60 Dublin, Ireland.
Nanomaterials (Basel). 2022 Jun 28;12(13):2223. doi: 10.3390/nano12132223.
Open pore mesoporous silica (MPS) thin films and channels were prepared on a substrate surface. The pore dimension, thickness and ordering of the MPS thin films were controlled by using different concentrations of the precursor and molecular weight of the pluronics. Spectroscopic and microscopic techniques were utilized to determine the alignment and ordering of the pores. Further, MPS channels on a substrate surface were fabricated using commercial available lithographic etch masks followed by an inductively coupled plasma (ICP) etch. Attempts were made to shrink the channel dimension by using a block copolymer (BCP) hard mask methodology. In this regard, polystyrene--poly(ethylene oxide) (PS--PEO) block copolymer (BCP) thin film forming perpendicularly oriented PEO cylinders in a PS matrix after microphase separation through solvent annealing was used as a structural template. An insitu hard mask methodology was applied which selectively incorporate the metal ions into the PEO microdomains followed by UV/Ozone treatment to generate the iron oxide hard mask nanopatterns. The aspect ratio of the MPS nanochannels can be varied by altering etching time without altering their shape. The MPS nanochannels exhibited good coverage across the entire substrate and allowed direct access to the pore structures.
在基底表面制备了开孔介孔二氧化硅(MPS)薄膜和通道。通过使用不同浓度的前驱体和普朗尼克的分子量来控制MPS薄膜的孔径尺寸、厚度和有序性。利用光谱和显微镜技术来确定孔的排列和有序性。此外,使用市售的光刻蚀刻掩膜,随后进行电感耦合等离子体(ICP)蚀刻,在基底表面制备了MPS通道。尝试使用嵌段共聚物(BCP)硬掩膜方法来缩小通道尺寸。在这方面,聚苯乙烯-聚环氧乙烷(PS-PEO)嵌段共聚物(BCP)薄膜在通过溶剂退火进行微相分离后,在PS基质中形成垂直取向的PEO圆柱,用作结构模板。应用原位硬掩膜方法,将金属离子选择性地掺入PEO微区,随后进行紫外/臭氧处理,以生成氧化铁硬掩膜纳米图案。通过改变蚀刻时间可以改变MPS纳米通道的纵横比,而不改变其形状。MPS纳米通道在整个基底上表现出良好的覆盖率,并允许直接进入孔结构。