Study on the Visibility Performance of Nocturnal Safety Clothing Based on Luminescent Fabrics
By: Yanhong Yan, Hongtuo Li, Ruixin Xu and Yonggui Li
References
- Li, J., Chen, Z., Ge, M. Computer-aided design of luminous fiber embroidered fabric and characterization of afterglow performance. Textile Research Journal, 2016; 86: 162–170.
- Ebrahimzade, A., Rahbar, R.S., Mojtahedi, M.R.M. Probing the photoluminescence characteristics and dyeability of dyed luminous polypropylene fabric. Fibers and Polymers, 2019; 20: 2529–2539.
- Yuan, X., Yu, H., Chen, Z., Wei, Q. Preparation and luminescent properties of rare earth Eu-doped nano-ZnO composite films on textiles. Journal of Industrial Textiles, 2024; 54: 15280837241306350.
- Li, J, Zhu, Y, Ge, M. Influence of fluorescent pigments on the spectral characteristics of luminous coated fabrics. Materials Research Express, 2021; 8: 115301.
- Yanhong, Y., Wang, L., Gu, B. Equivalent luminance of children nocturnal safety garments. Journal of Textile Research, 2019; 40: 136–140.
- Studzinska, A., Frydrych, I., Lezak, K. Transformable warning clothing for children with active light sources. Autex Research Journal, 2022; 22: 234–242.
- Liu, Y., Wang, X., Zhang, H. Development of novel luminescent nanocomposite fibers for high-performance safety clothing. Composites Science and Technology, 2023; 235: 109938.
- Choi, Y., Kim, J., Park, S. Intelligent safety garments with embedded flexible sensors for real-time fall detection and environmental monitoring in construction sites. Construction and Building Materials, 2023; 383: 132248.
- Wang, J., Li, Y., Zhang, H. A smart textile-based multifunctional safety vest for maritime workers with integrated GPS, temperature sensing, and lighting functions. Ocean Engineering, 2022; 261: 112093.
- Santos, G., Marques, R., Silva, S., Oliveira, J., Castro, P., Pereira, C., et al. Innovative high-visibility protective clothing development. Textiles, 2021; 1: 405–418.
- Chen, D., Cui, R., Huang, C., Wang, Z., Niu, L. Wearable mechanoluminescent triboelectric sensors for real-time monitoring of nighttime sports activities. ACS Applied Materials & Interfaces, 2025; 17: 18844–18851.
- Tian, Y., Ding, R., Yoon, S.S., Zhang, S., Yu, J., Ding, B. Recent advances in next-generation textiles. Advanced Materials, 2025; 37: 2305784.
- Yan, Y., Ge, M. Morphology and spectral characteristics of a luminous fiber containing a rare-earth strontium aluminate. Textile Research Journal, 2012; 82: 1819–1826.
- Zhu, Y, Zheng, L, Ge, M. Study on the properties of complex red luminescent fibers: Sr2MgSi2O₇:Eu2+, Dy3+/light conversion agents-polyacrylonitrile. Journal of Industrial Textiles, 2020; 51: 681S–699S.
- Jing, L, Jian, W, Yuan, Y. Preparation and luminescence properties of rare-earth doped fiber with spectral blue-shift SrAl2O4:Eu2+, Dy3+ phosphors/triaryl-sulfonium hexafluoroantimonate. Journal of Rare Earths, 2017; 35: 530–535.
- Jin, Y, Li, X, Zhu, Y. Shutter luminous fibres based on rare-earth materials for real-time thermal response. Materials Research Express, 2020; 7: 055301.
- Zhang, M., Wang, Y., Li, X. Application of novel thermochromic and luminescent hybrid materials in safety apparel. Journal of Fiber Bioengineering and Informatics, 2023; 16: 145–154.
- Wei, G, Yang, D, Zhang, T. Fabrication of multifunctional coating with high luminous transmittance, self-cleaning and radiative cooling performances for energy-efficient windows. Solar Energy Materials and Solar Cells, 2019; 202: 110125.
- Wu, R., Ge, M. The preparation of waterproof luminous coated fabric and its properties. Journal of Functional Materials, 2015; 46: 49–52.
- Shi, C., Shen, X., Zhu, Y. Excitation wavelength-dependent dual-mode luminescence emission for dynamic multicolor anticounterfeiting. ACS Applied Materials & Interfaces, 2019; 11: 18548–18554.
- Zhu, Y, Yu, Q, Zheng, L. Luminous properties of recycling luminous materials SrAl2O4:Eu2+: Dy3+ based on luminous polyester fabric. Materials Research Express, 2020; 7: 095309.
- Zhang, J., Ge, M. Effect of polymer matrix on the spectral characteristics of spectrum-fingerprint anti-counterfeiting fiber. The Journal of The Textile Institute, 2012; 103: 193–199.
- Zhao, J., Guo, X., Xu, Y. Luminescence properties of rare-earth strontium aluminate luminescent fiber. Journal of Textile Research, 2008; 29: 1–5.
- Xue, H., Ge, M., Zhu, Y. Preparation and properties research of a warm tone luminous polyacrylonitrile coaxial fiber based on SrAl2O4 phosphor. Journal of Luminescence, 2021; 231: 117783.
- Guo, X., Ge, M., Yan, Y. Preparation and study on the structure and properties of rare-earth luminescent fiber. Textile Research Journal, 2012; 82: 677–684.
- Chen, Z., Luo, L., Li, Y., Li, J., Wei, Q. Warm-toned SiO2/red-emitting color converter@SrAl2O4:Eu2+, Dy3+ luminous fibers with variable and color-tuned luminescence on the basis of radiative energy transfer and color conversion. Journal of Luminescence, 2019; 216: 116714.
- Yan, Y., Gu, B., Du, L. Study on the equivalent luminance of luminous fibers in mesopic vision. The Journal of The Textile Institute, 2019; 110: 311–316.
- Chen, Z., Xiong, N., Ge, M. Characterization of color including temporal hue shift of a range of long-lasting phosphorescent/fluorescent (SiO2/REC@SAOED) composites. Optical Materials Express, 2017; 7: 3909–3918.
- Chen, S., Liu, X., Zhao, H. Smart safety clothing integrated with luminescent and sensor technologies for night-time monitoring. Sensors and Actuators B: Chemical, 2022; 370: 132327.
- Delgado, T., Afshani, J., Hagemann, H. Spectroscopic study of a single crystal of SrAl2O4:Eu2+: Dy3+. The Journal of Physical Chemistry C, 2019; 123: 8607–8613.
- Ehinger, B.V., Gross, K., Ibs, I. A new comprehensive eye-tracking test battery concurrently evaluating the Pupil Labs glasses and the EyeLink 1000. PeerJ, 2019; 7: e7086.
- Chen, L.T., Li, Y., Hu, M.H. Research on recording methods of eye tracking technology based on human engineering. International Conference on Measurement, Instrumentation and Automation, 2016; 138: 96–98.
- Zhang, L., Zhao, Y., Sun, X. Advanced eye-tracking techniques for evaluating visual attention in textile design. Textile Research Journal, 2021; 91: 3099–3109.
- Hu, C., Peng, B., Song, K.X., Seo, H.J. The cyan-green luminescent behaviour of nitrided Ba₉Y2Si₆O24:Eu2+ phosphors for W-LED. Ceramics International, 2018; 44: S2–S6.
Language: English
Page range: 28 - 38
Submitted on: Apr 27, 2025
Accepted on: Feb 16, 2026
Published on: Apr 27, 2026
In partnership with: Paradigm Publishing Services
Publication frequency: Volume open
Related subjects:
© 2026 Yanhong Yan, Hongtuo Li, Ruixin Xu, Yonggui Li, published by Łukasiewicz Research Network, Institute of Biopolymers and Chemical Fibres
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.