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Aeir Extrait Molecular de Parfum in Wet Stone

$169
Description

Engineered as the first biomolecular scent by Aeir, Wet Stone Extrait Molecular de Parfum changes the roadmap for luxury fragrance through it’s cool and unexpected scent palette. Bioengineered Ambergris sits at its core with a distinctive mineral palette — paired with stone-like and woody nuances that brings a sweet, yet gentle sensuality to its character.


Olfactory Family: Mineral

Top Notes: Ambergris, Talc

Heart Notes: Sandalwood

Base Notes: Silk Musk, Vanilla


Warning: The ingredients that enter in the composition of Aeir products are regularly updated. Before using an Aeir product, please read the ingredient list on its packaging to ensure that the ingredients are suitable for your personal use.


Ingredients: CARBON CAPTURED™ ALCOHOL, PARFUM, COUMARIN, EUGENOL


How to Use: On clean skin, spray once or twice on desired areas. Do not rub the fragrance on skin, as this will alter how the fragrance develops.


About the Bottle:

The Aeir aluminum fragrance case is designed to be refillable and utilizes advanced-coating technologies created through zero waste production processes, merging the worlds of biotechnology and luxury craftsmanship. Originally developed by NASA, this process drastically reduces its carbon emissions and achieves more silver than silver finish without affecting recyclability of the product. All the refills are made with colored anodized aluminum and designed to be the first refill to be fully disassembled and recycled.


Delivery Time: 2 weeks lead time. 

Measurements

17ML 0.57 FL OZ

Condition
New
Color
Purple
Seller
Aeir Inc.

Founded by NUOVA in Venice Beach, California, Aeir™ is a vision for universal luxury that merges the timeless codes of luxury and craftsmanship with the forefront of bioengineering and artificial intelligence. Through advanced molecular engineering, our signature Extrait Molecular™ de Parfum redefines traditional scent creation by converting sugar molecules into perfume with fermentation. This approach allows us to create an infinite array of high concentration and carbon-neutral fragrances, while minimizing our environmental impact.

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