Tan Kwan Wee, Werner Jörg G, Goodman Matthew D, Kim Ha Seong, Jung Byungki, Sai Hiroaki, Braun Paul V, Thompson Michael O, Wiesner Ulrich
Department of Materials Science and Engineering , Cornell University , Ithaca , New York 14853 , United States.
School of Materials Science and Engineering , Nanyang Technological University , Singapore 639798 , Singapore.
ACS Appl Mater Interfaces. 2018 Dec 12;10(49):42777-42785. doi: 10.1021/acsami.8b12706. Epub 2018 Dec 3.
This report describes the generation of three-dimensional (3D) crystalline silicon continuous network nanostructures by coupling all-organic block copolymer self-assembly-directed resin templates with low-temperature silicon chemical vapor deposition and pulsed excimer laser annealing. Organic 3D mesoporous continuous-network resin templates were synthesized from the all-organic self-assembly of an ABC triblock terpolymer and resorcinol-formaldehyde resols. Nanosecond pulsed excimer laser irradiation induced the transient melt transformation of amorphous silicon precursors backfilled in the organic template into complementary 3D mesoporous crystalline silicon nanostructures with high pattern fidelity. Mechanistic studies on laser-induced crystalline silicon nanostructure formation revealed that the resin template was carbonized during transient laser-induced heating on the milli- to nanosecond timescales, thereby imparting enhanced thermal and structural stability to support the silicon melt-crystallization process at temperatures above 1250 °C. Photoablation of the resin material under pulsed excimer laser irradiation was mitigated by depositing an amorphous silicon overlayer on the resin template. This approach represents a potential pathway from organic block copolymer self-assembly to alternative functional hard materials with well-ordered 3D morphologies for potential hybrid photovoltaics, photonic, and energy storage applications.
本报告描述了通过将全有机嵌段共聚物自组装导向的树脂模板与低温硅化学气相沉积和脉冲准分子激光退火相结合,生成三维(3D)晶体硅连续网络纳米结构的过程。有机3D介孔连续网络树脂模板由ABC三嵌段三元共聚物与间苯二酚-甲醛甲阶酚醛树脂的全有机自组装合成。纳秒脉冲准分子激光辐照使填充在有机模板中的非晶硅前驱体发生瞬态熔融转变,形成具有高图案保真度的互补3D介孔晶体硅纳米结构。对激光诱导的晶体硅纳米结构形成的机理研究表明,在毫秒到纳秒时间尺度的瞬态激光诱导加热过程中,树脂模板被碳化,从而赋予增强的热稳定性和结构稳定性,以支持在1250℃以上的温度下进行硅熔体结晶过程。通过在树脂模板上沉积非晶硅覆盖层,减轻了脉冲准分子激光辐照下树脂材料的光烧蚀。这种方法代表了一条从有机嵌段共聚物自组装到具有有序3D形态的替代功能硬质材料的潜在途径,可用于潜在的混合光伏、光子和储能应用。