Botanical Ahimsa Silk Hair Bonnet | Pre-Launch Special Price
Botanical Organic Ahimsa Silk Hair Bonnet
Designed to be a natural extension of your hair routine while you sleep, our hair bonnet is an excellent choice for supporting multiple hair types and a no brainer during travel.
Our hair bonnet is made using our organic, cruelty free ahimsa silk which has been artisanally dyed using responsibly grown and wild-crafted botanicals and low impact eco compliant dyes.
Handcrafted at the atelier using certified organic cotton thread.
Choose between our elasticated bonnet with our organic bio-elastic or non-elasticated version with adjustable silk ties, so you can choose the silk bonnet of your dreams. Both options are designed to be especially gentle on hair and scalp.
Ergonomically designed to be spacious for all hair types + densities and work based on your sleep preferences. Our botanical bonnet can be comfortably tied at the nape or on top of your heads.
Our botanically-bathed silk is the epitome of luxury, sustainability and efficacy.
Exquisite. Circular. Biodegradable
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1 x T.Berry Botanical Ahimsa Silk Hair Bonnet
Each hair bonnet comes nestled in our signature gift sac.
Our hair bonnets are also available in other colours and prints. For currently available print options, please refer to the last photo.
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Benefits of using our Botanical Silk Hair Bonnets
We’ve been testing our Botanical Ahimsa Silk Hair Bonnets overnight since the past few months ourselves and curly, straight and wavy haired members of the T.Berry community have been testing it as well.
We are thrilled to share not only how beautiful the whole experience feels, but more importantly, how effective it is for supporting holistic hair health, especially for curly and wavy hair types.
- Locks in moisture = better hydration levels.
- Preserves and extends styling, and keeps your natural strand structure intact.
- Reduced split ends + less breakage because our double silked botanical bonnet is essentially a protectant for your stands that excels in reducing friction and thus, friction-related breakage.