Low-temperature molten-salt enabled synthesis of highly-efficient solid-state emitting carbon dots optimized using machine learning.

Nat Commun

Henan Key Laboratory of Diamond Optoelectronic Material and Devices, Key Laboratory of Material Physics, Ministry of Education, School of Physics, Zhengzhou University, Zhengzhou, China.

Published: September 2025


Category Ranking

98%

Total Visits

921

Avg Visit Duration

2 minutes

Citations

20

Article Abstract

Fluorescent carbon dots (CDs) have garnered significant attention for their unique optoelectronic properties and applications, but their practical employment is hampered by the excessive synthesis temperature, tedious post-processing and limited solid-state luminescence efficiency. Herein, we develop a facile molten salt method to achieve the one-step synthesis of full-color CDs with efficient solid-state emission. Comprehensively, kilogram-scale solid-state CDs with a quantum yield of 90% can be readily synthesized via a salt-assisted approach under mild conditions (100-142 °C) within 10 min. The spectral characterization and density functional theory calculation confirm that zinc ion coordination can occur in liquated environment, which facilitates the polymerization of precursors at lower temperatures, suppresses the formation of non-radiative recombination channels on their surface, and further enhances luminescence in solid. The machine learning is further used to optimize CDs' luminous efficiency up to 99.86%, evoking excellent performance CDs-based light-emitting diodes with a maximum luminous efficiency of 272.65 lm W to drive backlit display with a long-persistent lifetime (T at 100 cd m = 45108.7 h). This work provides a pathway for the design and fabrication of advanced carbon-based solid-state luminescent materials, significantly contributing to the advancement of next-generation lighting and display technologies.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC12402236PMC
http://dx.doi.org/10.1038/s41467-025-63653-2DOI Listing

Publication Analysis

Top Keywords

carbon dots
8
machine learning
8
luminous efficiency
8
solid-state
5
low-temperature molten-salt
4
molten-salt enabled
4
enabled synthesis
4
synthesis highly-efficient
4
highly-efficient solid-state
4
solid-state emitting
4

Similar Publications

Background: In the contemporary era of rapid digital advancement, information security is closely associated with our daily life. From personal information to state secrets, all domains are intricately linked with information. Consequently, the significance of information security has garnered growing attention from an ever-increasing number of individuals.

View Article and Find Full Text PDF

Mn-doped carbon dots-based fluorescent-colorimetric dual-mode probes for selective and sensitive detection of Cr(VI) ions and l-ascorbic acid via smartphone-integrated analytical platform.

Anal Chim Acta

November 2025

Guangxi Key Laboratory of Natural Polymer Chemistry and Physics, Key Laboratory of Nanobiosensor Analysis, College of Chemistry and Materials, Nanning Normal University, Nanning, 530001, PR China. Electronic address:

Background: Hexavalent chromium ions (Cr(VI)), a notorious toxic heavy metal pollutant with proven carcinogenicity, endangers human health and the environment. Meanwhile, l-ascorbic acid (L-AA), a vital biological antioxidant, has abnormal levels closely tied to various diseases. Developing efficient synchronous detection methods for these two key analytes is of great value in clinical and environmental monitoring.

View Article and Find Full Text PDF

A new variety of nitrogen-doped carbon dots (NCDs) was produced using a hydrothermal synthesis method, based on propanedioic acid and barbituric acid as the sources of carbon and nitrogen. The NCDs were analyzed by X-ray photoelectron spectroscopy (XPS), transmission electron microscopy (TEM), Zeta Potential,X-ray Diffraction(XRD),Thermogravimetry-Derivative Thermogravimetry(TG-DTG),Fourier transform infrared spectroscopy (FTIR) and Fluorescence Lifetime. The characterization results indicate that NCDs possess an average diameter of approximately 2.

View Article and Find Full Text PDF

A versatile fluorescent molecularly imprinted nanosensor (MIPs@O-CDs) for profiling ciprofloxacin (CIP) was innovatively developed using a controllable post-imprinting modification strategy. High-affinity molecularly imprinted polymers (MIPs) as recognition elements granted nanosensor favorable anti-interference. Bright orange-emission carbon dots (O-CDs) as signal transducers demonstrated prominent reverse fluorescence response to CIP due to inner filter effect, ameliorating detection sensitivity and accuracy.

View Article and Find Full Text PDF

The development of multifunctional nanoplatforms capable of drug delivery and real-time cellular imaging remains a key challenge in cancer theranostics. Herein, we report the development of a casein-protected maleic acid-derived nitrogen-doped carbon dot-based luminescent nanoplatform (MNCD@Cas NPs) for efficient delivery of the anticancer drug doxorubicin hydrochloride (DOX) to triple-negative breast cancer cells. Synthesized via a facile two-step method, the MNCD@Cas NPs exhibit bright blue fluorescence (λ = 390 nm), high water dispersibility, excellent colloidal stability, and substantial DOX loading capacity (∼84%) driven by electrostatic interactions.

View Article and Find Full Text PDF