Nowadays, the research community is highly engaged in reducing the catastrophic impact of synthetic chemicals and working in this line for prevention, recycling, and reuse of the biobased textile finishing agents. The present work explores the application of a colorless multifunctional finishing agent as a novel approach to improve the quality and durability of dyed materials. Traditional textile finishing processes primarily aim to impart desired functionalities and appearance through the application of various chemicals and treatments. However, these processes often involve the use of colored agents, which can affect the original hue of dyed materials. In contrast, colorless multifunctional finishing agents offer a compelling solution by providing functional benefits while preserving the intended color and appearance of the fabric. This study investigates the application of colorless multifunctional finishing agents to improve the functional performances of dyed materials, such as antimicrobial, ultraviolet resistance, and oxidative stress resistance. The finishing process involves the application of eco-friendly, non-coloring polyphenolic secondary metabolites to achieve desired functional characteristics. The finished fabric has shown exceptional ultraviolet protection (50+ rating) and more than 85% oxidative stress-resistant and antimicrobial properties without compromising the basis physical and aesthetic attributes of the fabric, expanding its potential in the global marketplace. A treated sample could produce 10.17 V average peak to peak open-circuit on triboelectrification with polyethylene terephthalate (PET) film. This proves the ability of such treated material to power small electronics while performing the functions of a wearable textile. Moreover, the study discusses the ecological and economic benefits of utilizing colorless multifunctional finishing. By reducing the need for color-altering finishing agents, manufacturers can streamline their processes, conserve resources, and minimize environmental impacts. This research contributes to the ongoing efforts to improve the textile industry’s sustainability all while ensuring that the original beauty and color of dyed fabrics are preserved.

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Investigation on the Performance of Dyed Textiles Treated with Colorless Multifunctional Biomaterial

  • Sourav Banerjee,
  • Chirantan Shee,
  • Shivangi Sharma,
  • Poonam Choudhary,
  • S. Wazed Ali,
  • Satya Narayan Naik

摘要

Nowadays, the research community is highly engaged in reducing the catastrophic impact of synthetic chemicals and working in this line for prevention, recycling, and reuse of the biobased textile finishing agents. The present work explores the application of a colorless multifunctional finishing agent as a novel approach to improve the quality and durability of dyed materials. Traditional textile finishing processes primarily aim to impart desired functionalities and appearance through the application of various chemicals and treatments. However, these processes often involve the use of colored agents, which can affect the original hue of dyed materials. In contrast, colorless multifunctional finishing agents offer a compelling solution by providing functional benefits while preserving the intended color and appearance of the fabric. This study investigates the application of colorless multifunctional finishing agents to improve the functional performances of dyed materials, such as antimicrobial, ultraviolet resistance, and oxidative stress resistance. The finishing process involves the application of eco-friendly, non-coloring polyphenolic secondary metabolites to achieve desired functional characteristics. The finished fabric has shown exceptional ultraviolet protection (50+ rating) and more than 85% oxidative stress-resistant and antimicrobial properties without compromising the basis physical and aesthetic attributes of the fabric, expanding its potential in the global marketplace. A treated sample could produce 10.17 V average peak to peak open-circuit on triboelectrification with polyethylene terephthalate (PET) film. This proves the ability of such treated material to power small electronics while performing the functions of a wearable textile. Moreover, the study discusses the ecological and economic benefits of utilizing colorless multifunctional finishing. By reducing the need for color-altering finishing agents, manufacturers can streamline their processes, conserve resources, and minimize environmental impacts. This research contributes to the ongoing efforts to improve the textile industry’s sustainability all while ensuring that the original beauty and color of dyed fabrics are preserved.