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Fullerenol

Basic information

  • Product Name:Fullerenol
  • CAS No.:182024-42-6
  • EINECS No.:-
  • MF:C60(OH)n

Product Specifications

  • Appearance:dark-brown or black-brown crystalline powder
  • Specification:99.0%
  • Package:1/5/10/25kgs/drum
  • Supply Capacity:KGS
  • UN number:-
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Product Details

CAS No:182024-42-6

MF:C60(OH)n

Appearance:dark-brown or black-brown crystalline powder

Specification:99.0%

UN number:-

Package:1/5/10/25kgs/drum

Supply Capacity:KGS

Synonyms:hydroxylated fullerenes;Polyhydroxylated fullerenes, water soluble


Product application:Hydroxylated Fullerenes,182024-42-6,Fullerenol,Fullerol,Polyhydroxy fullerene,Water soluble fullerene,C60(OH)n,Hydroxylated C60,Cosmetic grade Fullerenol,Water soluble radical sponge,Broad spectrum antioxidant active,Anti-aging skincare active,Anti-photoaging cosmetic ingredient,Melanin synthesis inhibitor,Skin barrier anti-inflammatory active,Cellular radioprotective agent,Neuroprotective active compound,Targeted nanocarrier building block,Perovskite solar cell aqueous passivator,Hydrophilic membrane modifier,High purity fullerenol 99%,Hydroxylated Fullerenes manufacturer China,CAS 182024-42-6 supplier,Suzhou Health Chemicals nanocarbon materials,Fullerenol wholesale bulk export

 

Hydroxylated Fullerenes serve as an indispensable, ultra-pure water-soluble functionalized nanocarbon material, benchmark broad-spectrum cellular free-radical scavenger, and versatile interfacial modifying agent extensively utilized across high-end cosmetic formulations, clinical radioprotective pharmaceuticals, perovskite solar cell technologies, water purification membrane engineering, and advanced nanobiotechnology sectors. In cosmetic science and personal care formulation, universally known as Fullerenol or Fullerol, its molecular structure strategically incorporates multiple hydrophilic hydroxyl groups covalently functionalized across a spherical conjugated C60 fullerene framework; this molecular transformation completely resolves the historic solvent incompatibility of pristine fullerenes, providing instantaneous thermodynamic solubility and prolonged dispersion stability in pure aqueous phases, clear toners, and cosmetic serums without requiring secondary chemical emulsifiers or liposomal encapsulation; it operates as an extraordinary water-soluble radical sponge across living cutaneous strata, continuously neutralizing damaging cascade species including superoxide anions, hydroxyl radicals, hydrogen peroxide, and peroxynitrite with durability and anti-photoaging potencies exceeding classical ascorbic acid or polyphenols; this biochemical intervention downregulates ultraviolet-induced matrix metalloproteinase-1 (MMP-1) transcription, preserves collagen-I and elastin fiber density, blocks downstream tyrosinase-mediated melanogenesis to reverse hyperpigmentation, and accelerates physical epidermal barrier recovery in clinical anti-wrinkle serums, post-laser rejuvenating lotions, and revitalizing scalp ampoules. In biomedical sciences and pharmacology, its high-density hydroxyl surface acts as an exceptional electron-buffering sink and proton donor, offering neuroprotective, anti-ischemic, and radioprotective properties that shield healthy stem cells and vascular endothelial tissues against ionizing radiation and cerebral ischemia-reperfusion oxidative trauma. In precision drug delivery platforms, its biocompatible cage geometry provides a multifunctional scaffold for conjugating antineoplastic cytotoxic payloads and imaging dyes, enhancing systemic circulation half-life and cellular endocytosis. In renewable energy photovoltaics, it is deployed as an environmentally friendly aqueous interfacial dopant for inverted and tandem perovskite solar cells, where its multivalent oxygen lone pairs coordinatively passivate uncoordinated surface lead defects, reducing trap density and elevating long-term ambient moisture resistance. In membrane filtration technology, it is crosslinked into polyamide reverse osmosis and nanofiltration selective barriers to impart superhydrophilic antifouling surfaces that drastically enhance water permeation flux while resisting organic fouling. Furthermore, in eco-friendly waterborne anti-corrosion primers, green water-based tribological lubricant additives, and printed flexible bioelectronics, chemical systems engineered from Hydroxylated Fullerenes deliver outstanding aqueous stability, biocompatibility, and broad multi-industry performance.