用于促进微藻生长和生物质组成的等离子体薄膜光滤波器的定制制造

Tailored Fabrication of Plasmonic Film Light Filters for Enhanced Microalgal Growth and Biomass Composition.

作者信息

Estime Bendy, Ren Dacheng, Sureshkumar Radhakrishna

机构信息

Department of Biomedical and Chemical Engineering, Syracuse University, Syracuse, NY 13244, USA.

Merck & Co., Inc., 770 Sumneytown Pike, West Point, PA 19486, USA.

出版信息

Nanomaterials (Basel). 2023 Dec 22;14(1):44. doi: 10.3390/nano14010044.

Abstract

Through plasmon resonance, silver and gold nanoparticles can selectively backscatter light within different regions of the visible electromagnetic spectrum. We engineered a plasmonic film technology that utilizes gold and silver nanoparticles to enhance light at the necessary wavelengths for microalgal photosynthetic activities. Nanoparticles were embedded in a polymeric matrix to fabricate millimeter-thin plasmonic films that can be used as light filters in microalgal photobioreactors. Experiments conducted with microalga proved that microalgal growth and photosynthetic pigment production can be increased by up to 50% and 78%, respectively, by using these plasmonic film light filters. This work provides a scalable strategy for the efficient production of specialty chemicals and biofuels from microalgae through irradiation control with plasmonic nanoparticles.

摘要

通过等离子体共振,银和金纳米颗粒可以在可见电磁光谱的不同区域选择性地反向散射光。我们设计了一种等离子体薄膜技术,利用金和银纳米颗粒来增强微藻光合活动所需波长的光。纳米颗粒被嵌入聚合物基质中,以制造毫米厚的等离子体薄膜,可作为微藻光生物反应器中的滤光器。对微藻进行的实验证明,使用这些等离子体薄膜滤光器可使微藻生长和光合色素产量分别提高多达50%和78%。这项工作提供了一种可扩展的策略,通过用等离子体纳米颗粒控制辐照,从微藻中高效生产特种化学品和生物燃料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/46f7/10780999/266d978a10ff/nanomaterials-14-00044-g001.jpg

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