Using waste CO<sub>2</sub> to produce essential amino acids for humans: An efficient photoelectrochemical route.

Zhang, Xiaoran; Lyu, Yanhong; Ding, Jingjing; Wang, Xin; Johannessen, Bernt; Jiang, San Ping; Zheng, Jianyun · Sci Adv · 2025

basic_science · Level V

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Abstract

l-phenylalanine (l-Phe), an essential amino acid for humans, is widely used as building blocks. Currently, l-Phe is obtained via biosynthetic methods including microbial and enzymatic processes, but their tightly complex feedback regulation and lengthy reaction steps lead to a low practical yield of l-Phe. Here, we have designed a hierarchical Si-based photocathode for l-Phe synthesis by photoelectrochemical coupling of waste CO<sub>2</sub> and nitrophenyl ethane, achieving a high yield rate of 37.5 μg·hour<sup>-1</sup>·cm<sup>-2</sup> and a remarkable Faradaic efficiency of 21.2% at low applied potential under 1 sun illumination. The hierarchical structure with CuO-TiO<sub>2</sub>-C mixtures dispersed in amorphous TiO<sub>2</sub> layer/n<sup>+</sup>p-Si creates an internal built-in electric field and forms plentiful conducting channels to efficiently realize the injection of electrons into Cu and Ti sites. These Cu and Ti sites adsorb and activate the CO<sub>2</sub> and nitrophenyl ethane, respectively, cooperatively facilitating the l-Phe synthesis. This work introduces an environmentally friendly and highly efficient approach for converting solar energy into valuable amino acid products.

Medical subject headings