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Florantone T: A Radiant Orange-Flower Musk Note with Lasting Elegance

  • Writer: Galbora
    Galbora
  • Nov 7
  • 3 min read
Florantone T: A Radiant Orange-Flower Musk Note with Lasting Elegance

Introduction to Florantone T

Florantone T is a sophisticated fragrance ingredient that bridges the gap between delicate floralcy and soft musky warmth. Known for its radiant orange-flower tonality and subtle musk undertone, this molecule provides a luxurious smoothness to perfume compositions. With remarkable stability and resistance to discoloration, Florantone T has become a key element in modern perfumery where longevity and elegance are essential.


Key Olfactory Characteristics

🌸 Floral Radiance:Delivers a soft yet luminous floral profile, reminiscent of orange blossom and neroli, while maintaining a natural smoothness.

🍊 Orange-Flower Heart:Adds a fresh, creamy brightness ideal for floral, chypre, and musky accords.

🌿 Musk and Warmth:Its underlying musk nuance provides roundness, volume, and sensual diffusion to both top and heart notes.

💎 Exceptional Stability:Maintains integrity under light, heat, and alkaline conditions, allowing reliable performance in diverse product bases.


Chemical Structure and Molecular Details

Property

Value / Description

Chemical Name

1-(5,6,7,8-Tetrahydronaphthalen-2-yl)ethanone

Synonym

1-(5,6,7,8-Tetrahydro-2-naphthyl)ethan-1-one

Molecular Formula

C₁₂H₁₄O

Molecular Weight

174.24 g/mol

CAS Number

774-55-0

GC Purity

≥ 98 % (as Acetyl Tetralin)

Flash Point

154 °C

Vapor Pressure

0.52 Pa at 25 °C

CLogP

3.64

Appearance

Clear, colorless liquid

Its balanced aromatic ring system contributes to moderate volatility and excellent substantivity, enabling depth and diffusion simultaneously.


Occurrence in Nature

Florantone T is a synthetic compound and does not occur in nature. However, its scent evokes the luminous elegance of natural orange blossom and musky floral bouquets — offering perfumers a stable, long-lasting substitute for natural materials.


Florantone T: A Radiant Orange-Flower Musk Note with Lasting Elegance

Applications in the Fragrance Industry

Fine Fragrance Design:Enhances orange-flower and white-floral accords, imparting long-lasting elegance and radiance. Perfect for luxury perfumes requiring smooth musky depth.

Personal Care & Cosmetics:Ideal for shampoos, lotions, and body sprays due to its high pH stability and resistance to discoloration. Provides a clean, sophisticated floral-musky freshness.

Home & Fabric Care:Performs well in detergents, softeners, and air-fresheners, leaving a refined floral-musk trail that persists on fabrics.


Stability and Environmental Performance

Application

pH / Type

Stability

Fine Fragrance

Neutral

Good

Fabric Softener

pH 3

Good

Antiperspirants

pH 3.5

Good

Toiletries

pH 6

Good

Liquid Detergent

pH 9

Good

Soap

pH 10

Good

Powder Detergent

pH 11

Good

Bleach

pH 14

Fair

Florantone T retains its integrity even under mildly alkaline conditions, offering wide-ranging versatility across fragrance applications.


Substantivity and Longevity

Surface / Medium

Performance

Skin

Good

Hair

Good

Wet Fabric

Good

Dry Fabric

Good

It exhibits excellent retention on most surfaces, providing a lasting floral-musk impression.


Diffusion and Tenacity

🌬️ Diffusivity: Fairly diffusive, imparting a soft, enveloping bloom.

Tenacity on Blotter: Detectable for over one week — confirming its role as a long-lasting musky floral heart note.


Typical Use Level

Used typically at < 5 % of the fragrance formula. Even at low concentrations, it enriches floral accords with velvety depth and elegant persistence.


Conclusion

Florantone T embodies the modern balance between floral luminosity and musky sophistication. Its remarkable stability, fine diffusion, and week-long tenacity make it a cornerstone material in luxury perfumery, personal-care, and fabric applications. With its refined orange-flower heart and clean musk trail, Florantone T enhances compositions that aim for timeless sensuality and technical reliability.



This article was researched and written by Galbora.

Use of this content is permitted when citing the source.


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