Tao Peipei, Wang Qianqian, Vockenhuber Michaela, Zhu Da, Liu Tianqi, Wang Xiaolin, Hu Ziyu, Wang Yimeng, Wang Jianlong, Tang Yaping, Ekinci Yasin, Xu Hong, He Xiangming
Institute of Nuclear and New Energy Technology, Tsinghua University, Beijing 100084, China.
Paul Scherrer Institute, Forschungstrasse 111, Villigen 5232, Switzerland.
J Am Chem Soc. 2023 Nov 1;145(43):23609-23619. doi: 10.1021/jacs.3c07595. Epub 2023 Oct 19.
Metal-containing nanoparticles possess nanoscale sizes, but the exploitation of their nanofeatures in nanofabrication processes remains challenging. Herein, we report the realization of a class of zinc-based nanoparticle liquids and their potential for applications in controlled nanofabrication. Utilizing the metal-core charge shielding strategy, we prepared nanoparticles that display glass-to-liquid transition behavior with glass transition temperature far below room temperature (down to -50.9 °C). Theoretical calculations suggest the outer surface of these unusual nanoparticles is almost neutral, thus leading to interparticle interactions weak enough to give them liquefaction characteristics. Such features endow them with extraordinarily high dispersibility and excellent film-forming capabilities. Twenty-two types of nanoparticles synthesized by this strategy have all shown good lithographic properties in the mid-ultraviolet, electron beam, or extreme ultraviolet light, and these nanoparticle liquids have achieved controlled top-down nanofabrication with predesigned 18 or 16 nm patterns. This proposed strategy is synthetically scalable and structurally extensible and is expected to inspire the design of entirely new forms of nanomaterials.
含金属的纳米颗粒具有纳米级尺寸,但其纳米特性在纳米制造过程中的应用仍具有挑战性。在此,我们报告了一类锌基纳米颗粒液体的实现及其在可控纳米制造中的应用潜力。利用金属核电荷屏蔽策略,我们制备了具有玻璃态到液态转变行为的纳米颗粒,其玻璃化转变温度远低于室温(低至-50.9°C)。理论计算表明,这些特殊纳米颗粒的外表面几乎呈中性,因此导致颗粒间相互作用足够弱,赋予它们液化特性。这些特性使其具有极高的分散性和出色的成膜能力。通过该策略合成的22种纳米颗粒在中紫外光、电子束或极紫外光下均表现出良好的光刻性能,并且这些纳米颗粒液体已实现了具有预先设计的18或16nm图案的可控自上而下纳米制造。所提出的策略在合成上具有可扩展性,在结构上具有可扩展性,有望激发全新形式纳米材料的设计。