Solar-driven selective conversion of millimolar dissolved carbon to fuels with molecular flux generation

B Bin Liu Z Zheng Qian X Xiang Shi H Haoqing Su (Department of Chemical and Environmental Engineering, Yale University) W Wentao Zhang A Atsu Kludze Y Yuze Zheng (College of Chemistry and Molecular Engineering) C Chengxing He R Rito Yanagi S Shu Hu (Department of Chemical and Environmental Engineering, Yale University)

Abstract

Abstract The direct utilization of dissolved inorganic carbon in seawater for CO 2 conversion promises chemical production on-demand and with zero carbon footprint. Photoelectrochemical (PEC) CO 2 reduction (CO 2 R) devices promise the sustainable conversion of dissolved carbon in seawater to carbon products using sunlight as the only energy input. However, the diffusion-dominant transport mechanism and the near-zero concentration of CO 2 (aq) (CO 2 dissolved in aqueous solution) in static seawater has made it extremely challenging to achieve high solar-to-fuel (STF) efficiency and high carbon-product selectivity. Here, where CO 2 (aq) as a reactant generated in situ by acidification of HCO 3 - flows continuously from BiVO 4 photoanodes to Si photocathodes, enabling a single-step conversion of dissolved carbon into products. Our PEC device significantly increases the CO selectivity from 3% to 21%, which approaches the 30% theoretical limit according to multi-physics modeling. Meanwhile, the Si/BiVO 4 PEC CO 2 R device achieved a STF efficiency of 0.71%. Such flow engineering achieves flow-dependent selectivity, rate, and stability in simulated seawater, thus promising practical solar fuel production at scale.

Article Details

Volume / Issue Vol. 16, Issue 1
Published February 12, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (10)

B

Bin Liu

Z

Zheng Qian

X

Xiang Shi

H

Haoqing Su

Department of Chemical and Environmental Engineering, Yale University

W

Wentao Zhang

A

Atsu Kludze

Y

Yuze Zheng

College of Chemistry and Molecular Engineering

C

Chengxing He

R

Rito Yanagi

S

Shu Hu

Department of Chemical and Environmental Engineering, Yale University