The promotion effect of carbon quantum dots derived from maize stalks on the photosynthesis of maize growth

This study described the preparation of water-soluble carbon quantum dots (CQDs) from maize stalks via a hydrothermal method at 200 °C for 10 h. The prepared CQDs exhibited an average particle size of 2.03 nm with a graphene structure, and the surfaces contained hydroxyl and carboxyl functional groups. For the aqueous solution of CQDs at a concentration of 100 mg/L, the optimal excitation wavelength was 410 nm, and the maximum emission wavelength was 495 nm. By utilizing the down-conversion luminescence properties of CQDs to enhance photosynthesis in maize growth, it was found that the optimal CQD concentration was 25 mg/L when maize seedlings were sprayed with CQDs at different concentrations for 7 days. The maize plant height, leaf area, leaf length, leaf circumference, chlorophyll content, Hill reaction activity, total photosynthetic rate, and net photosynthetic rate significantly increased by 43.2%, 25.6%, 31.2%, 27.3%, 35.2%, 45.5%, 29.8% and 46.6% compared with the CK, respectively. This work developed and demonstrated a feasible strategy for synthesizing cost-effective CQDs and may offer a potential benefit for early-stage corn seedling growth under controlled conditions.

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Journal
Bioresources and Bioprocessing
Published
2026-09-30
DOI
https://doi.org/10.1186/s40643-026-01138-w
Primary Topic
Carbon and Quantum Dots Applications
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article
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The promotion effect of carbon quantum dots derived from maize stalks on the photosynthesis of maize growth

Di CaiXia, Libo Han, Mingcai Zhang, Shuaijie Wang et al.
Bioresources and Bioprocessing
Carbon and Quantum Dots Applications
article

The promotion effect of carbon quantum dots derived from maize stalks on the photosynthesis of maize growth

Di CaiXia, Libo Han, Mingcai Zhang, Shuaijie Wang, Baohe Li, Qi Dong, Xiuping Li, Yanfang Li, Lihong Guo, Jie Duan
article en

Abstract

This study described the preparation of water-soluble carbon quantum dots (CQDs) from maize stalks via a hydrothermal method at 200 °C for 10 h. The prepared CQDs exhibited an average particle size of 2.03 nm with a graphene structure, and the surfaces contained hydroxyl and carboxyl functional groups. For the aqueous solution of CQDs at a concentration of 100 mg/L, the optimal excitation wavelength was 410 nm, and the maximum emission wavelength was 495 nm. By utilizing the down-conversion luminescence properties of CQDs to enhance photosynthesis in maize growth, it was found that the optimal CQD concentration was 25 mg/L when maize seedlings were sprayed with CQDs at different concentrations for 7 days. The maize plant height, leaf area, leaf length, leaf circumference, chlorophyll content, Hill reaction activity, total photosynthetic rate, and net photosynthetic rate significantly increased by 43.2%, 25.6%, 31.2%, 27.3%, 35.2%, 45.5%, 29.8% and 46.6% compared with the CK, respectively. This work developed and demonstrated a feasible strategy for synthesizing cost-effective CQDs and may offer a potential benefit for early-stage corn seedling growth under controlled conditions.

Bioresources and BioprocessingVol. 13(1)
Inner Mongolia University (CN), Inner Mongolia Academy of Agricultural & Animal Husbandry Sciences (CN)
Openalex Percentile: Top 26%
Carbon and Quantum Dots Applications
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The promotion effect of carbon quantum dots derived from maize stalks on the photosynthesis of maize growth — Di CaiXia, Libo Han, et al. · Bioresources and Bioprocessing (2026) | TGRS Research Map | TGRS