Sharma Pankaj, Han Moon Hee, Cho Churl Hee
Graduate School of Green Energy Technology, Chungnam National University, 99 Daehak-ro, Yuseong-gu, Daejeon 305-764, Republic of Korea.
Graduate School of Green Energy Technology, Chungnam National University, 99 Daehak-ro, Yuseong-gu, Daejeon 305-764, Republic of Korea.
J Colloid Interface Sci. 2014 May 15;422:45-53. doi: 10.1016/j.jcis.2014.02.013. Epub 2014 Feb 20.
A droplet based new hydrothermal synthesis method for nano-zeolite synthesis in bulk amount with uniform size, shape and morphology is presented. The proposed process addresses the limitation and shortcomings of droplet based microfluidic reactors and conventional hydrothermal methods. The process has been designed on the concept of mixing two immiscible solutions at high speed which then produces nano/submicron size droplets. Confinement within the droplet provides uniform heat transfer, enhanced mass transfer to growing crystal, chaotic advection within droplet facilitate rapid mixing, prevent the contact between growing crystals etc. Fine-tuned nano-cubic LTA zeolite crystals of size ∼100 nm with uniform morphology and size distribution were prepared. Just within 4h of reaction time (aging+crystallization) well shaped cubic crystals with high crystallinity and size uniformity can be synthesized by the proposed synthesis process. Diffraction and electron microscopic studies reveal the high phase purity and size uniformity of as-synthesized LTA zeolite particles.
提出了一种基于液滴的新型水热合成方法,用于大量合成尺寸、形状和形态均一的纳米沸石。所提出的工艺解决了基于液滴的微流控反应器和传统水热方法的局限性和缺点。该工艺基于高速混合两种不混溶溶液的概念进行设计,然后产生纳米/亚微米尺寸的液滴。液滴内的限制提供了均匀的热传递、增强了向生长晶体的传质、液滴内的混沌平流促进了快速混合、防止了生长晶体之间的接触等。制备了尺寸约为100 nm、形态和尺寸分布均匀的微调纳米立方LTA沸石晶体。在所提出的合成工艺中,仅在4小时的反应时间(老化+结晶)内,就可以合成出形状良好、结晶度高且尺寸均匀的立方晶体。衍射和电子显微镜研究揭示了合成的LTA沸石颗粒具有高的相纯度和尺寸均匀性。