Close Menu
  • News
  • Medical
  • Technology
  • Nanomaterials
  • Research
  • Blog
    • Nasiol.com
  • Contact
    • Tech7685@gmail.com
What's Hot

Dual-stage monitoring technique for nanocomposites can streamline manufacturing and property tracking

May 11, 2025

Probing the molecular mechanisms of metastasis

May 10, 2025

AI-powered electronic nose detects diverse scents for health care and environmental applications

May 10, 2025
Facebook X (Twitter) Instagram
Nanotech – Nanomaterials | Medical | Research | News Stories Updated Daily Nanotech – Nanomaterials | Medical | Research | News Stories Updated Daily
  • News
  • Medical
  • Technology
  • Nanomaterials
  • Research
  • Blog
    • Nasiol.com
  • Contact
    • Tech7685@gmail.com
Facebook X (Twitter) Instagram
Nanotech – Nanomaterials | Medical | Research | News Stories Updated Daily Nanotech – Nanomaterials | Medical | Research | News Stories Updated Daily
Home»Research»How Lignin Nanoparticles Enhance UV Protection in Sunscreen Formulas
Research

How Lignin Nanoparticles Enhance UV Protection in Sunscreen Formulas

March 20, 2024No Comments3 Mins Read
Facebook Twitter Pinterest Telegram LinkedIn Tumblr WhatsApp Email
How Lignin Nanoparticles Enhance UV Protection in Sunscreen Formulas
Share
Facebook Twitter LinkedIn Pinterest Telegram Email

The innovative realm of cosmetic science has recently spotlighted lignin nanoparticles (LNPs) for their exceptional potential in fortifying sun protection measures within skincare products. These nanoparticles are celebrated for their superior ability to block harmful UV rays, a critical feature that outshines the capabilities of their soluble counterparts, the lignin oligomers.

Despite these promising attributes, the intricate relationship between the chemical makeup of these LNPs and their particle size distribution remains a subject of ongoing research. A notable challenge in this field has been the reliance on technical lignin as a primary source material, which undergoes significant structural alterations during extraction, thus complicating the study of its inherent UV-blocking properties.

In a significant stride towards demystifying these complexities, a team of Chinese researchers embarked on a comprehensive study, the findings of which were documented in the esteemed journal Carbon Resources Conversion. This research initiative delved into the interplay between the chemical constitution and particle size distribution of LNPs, aiming to unravel the factors that govern their efficacy in amplifying sunscreens’ sun protection factor (SPF).

Zhicheng Jiang, a co-corresponding author and a distinguished member of the College of Biomass Science and Engineering at Sichuan University, shed light on the transformative potential of LNPs when engineered into nanoparticles. He elucidated, “Upon preparation into nanoparticles, lignin can synergistically enhance the UV shielding effect of composite materials when combined with other anti-UV agents, such as commercial sunscreens.”

Jiang further expounded on the complexities of optimising the UV-blocking prowess of LNPs within sunscreen formulations. He emphasised that the task is far from simple, as it necessitates a nuanced understanding of various parameters, including the LNPs’ structure, size, and concentration, which collectively influence the performance of the sunscreen post the incorporation of LNPs.

See also  Team develops novel sponge-based triboelectric nanogenerator for corrosion protection in transportation systems

The research unveiled that LNPs characterised by dense structures featuring conjugating C=O and β-O-4 linkages along with a syringyl unit enriched with methoxyl groups significantly bolstered the UV resistance of sunscreen formulations. Jiang revealed a fascinating aspect of the LNPs’ behaviour when mixed in sunscreens, stating, “In sunscreen formulations, the simultaneous inclusion of large and small LNPs results in a state of disorder, which allows some particles to fill the gaps between them and adjacent particles, leading to a more compact LNP shield.” This intricate interplay, he noted, markedly elevates the UV-blocking efficiency of the mixture, surpassing that of formulations with uniformly sized LNPs at equivalent concentrations.

Tianyu Liang, the study’s lead author, reflected on the past challenges and the breakthroughs achieved through this research. He remarked, “In the past, exploring the UV shielding mechanism of LNPs and consciously regulating them was a daunting task.” Liang’s statement underscores the groundbreaking nature of their findings, which pave the way for tailored strategies to enhance the UV protection capabilities of LNPs, whether through chemical modifications or adjustments in particle size distribution.

The study highlights the technical advancements in the field and underscores the potential of LNPs as a sustainable, nature-derived solution for UV protection in sunscreens and broader cosmetic applications. This research marks a significant milestone in the journey towards harnessing the full potential of lignin nanoparticles, promising a future where skincare products are more effective in protecting against the sun’s harmful rays and lean towards natural, environmentally friendly ingredients.

Author

Isabella Sterling

Content Producer and Writer

Nano Magazine | The Breakthrough 

Image

Source link

See also  Pioneering Research Opens New Avenues for Efficient Cooling Technologies
Enhance Formulas Lignin nanoparticles protection Sunscreen
Share. Facebook Twitter Pinterest LinkedIn Tumblr Email

Related Posts

Ultrasound-activated nanoparticles wipe out biofilm infections in lab tests

May 1, 2025

How gold nanoparticles may one day help to restore people’s vision

April 26, 2025

Engineers develop a way to mass manufacture nanoparticles that deliver cancer drugs directly to tumors

April 15, 2025

Bacteria-enhanced graphene oxide nanoparticles provide triple-action tumor eradication

April 14, 2025

Chemical oscillations in palladium nanoparticles could pave way for recycling precious metal catalysts

April 1, 2025

DNA-loaded lipid nanoparticles are poised to bring gene therapy to common chronic diseases

April 1, 2025

Comments are closed.

Top Articles
News

Quantum-inspired design boosts efficiency of heat-to-electricity conversion

News

A nanomaterial one-two punch quickly heals wounds in diabetic animal model

Dual-stage monitoring technique for nanocomposites can streamline manufacturing and property tracking

Editors Picks

Dual-stage monitoring technique for nanocomposites can streamline manufacturing and property tracking

May 11, 2025

Probing the molecular mechanisms of metastasis

May 10, 2025

AI-powered electronic nose detects diverse scents for health care and environmental applications

May 10, 2025

Microbubble dynamics in boiling water enable precision fluid manipulation

May 9, 2025
About Us
About Us

Your go-to source for the latest nanotechnology breakthroughs. Explore innovations, applications, and implications shaping the future at the molecular level. Stay informed, embrace the nano-revolution.

We're accepting new partnerships right now.

Facebook X (Twitter) Instagram Pinterest
Our Picks

Novel framework allows for tunable ultrasound propagation in microscale metamaterials

November 29, 2024

Nanoparticle technology demonstrates selective destruction of leukemia cancer cells

November 1, 2024

Light Can Vaporize Water Without Heat

May 5, 2024

Subscribe to Updates

Get the latest creative Nano Tech news from Elnano.com

© 2025 Elnano.com - All rights reserved.
  • Contact
  • Privacy Policy
  • Terms & Conditions

Type above and press Enter to search. Press Esc to cancel.

Cleantalk Pixel