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等体积不同纵横比水滴粒子的光学特性计算
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作者 蒋佳丽 张建奇 马向超 《红外技术》 CSCD 北大核心 2021年第8期743-751,共9页
不同重力场环境中水滴粒子的形状会偏离球形,为了研究水滴粒子非球形化程度对其光学特性的影响,本文计算了不同方向取向下,等体积不同纵横比水滴粒子在3.0~5.0 μm波段的光学特性。研究发现虽然不同纵横比水滴粒子的光学特性在3.0~5.0 ... 不同重力场环境中水滴粒子的形状会偏离球形,为了研究水滴粒子非球形化程度对其光学特性的影响,本文计算了不同方向取向下,等体积不同纵横比水滴粒子在3.0~5.0 μm波段的光学特性。研究发现虽然不同纵横比水滴粒子的光学特性在3.0~5.0 μm波段的变化趋势相似,但具体数值仍然明显依赖于水滴粒子的空间取向和偏离球形程度。总体而言,水滴粒子的吸收截面只在方位角θ较小和波长较短时随其纵横比显著变化;而散射截面、不对称因子和散射相函数则在任意方位角和波长下都对水滴粒子的纵横比有较明显的依赖。因此,由于光学特性对水滴粒子的纵横比有较强的依赖性,由水滴粒子所组成的水雾的辐射传输特性会强烈依赖于水滴粒子的形状。 展开更多
关键词 水滴粒子 离散偶极子近似法(discrete-dipole approximation DDA) 光学特性 旋转椭球体 纵横比
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A Miniature Droplet Reactor Built on Nanoparticle-Derived Superhydrophobic Pedestals 被引量:5
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作者 Bin Su, Shutao Wang Yanlin Song Lei Jiang 《Nano Research》 SCIE EI CAS CSCD 2011年第3期266-273,共8页
The capability to design and modulate materials, shapes, heat transfer, and mass mixing during the process of developing chemical reactors has allowed researchers to explore millions of chemical reactions and assays. ... The capability to design and modulate materials, shapes, heat transfer, and mass mixing during the process of developing chemical reactors has allowed researchers to explore millions of chemical reactions and assays. However, despite the advantages in engineering array-based microreactors or microfluidic systems, the wetting attachment between solutions of reagents/products and the glass or polymer substrates of containers leads to difficulties in collecting products effectively and preventing channel blockage. Herein we present a miniature droplet reactor which takes advantage of the anti-wetting and low-adhesive properties of nanoparticle-derived superhydrophobic pedestals, allowing aqueous droplets to be manipulated freely but also providing a confined environment for performing a series of aqueous phase chemical reactions on a small scale. Gas- or precipitate- forming reactions can also be performed inside this miniature reactor. Most importantly, reaction products in liquid, solid or gaseous states can be collected effectively, which allows the harvesting of valuable products formed in limited amounts. Such a miniature reactor built on superhydrophobic pedestals provides a new way of performing common chemical reactions and may open the door to the design of next-generation microreaction systems. 展开更多
关键词 SUPERHYDROPHOBIC REACTOR DROPLET hybrid materials NANOMATERIALS
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