A woman stands against a light gray studio background wearing a bright turquoise-blue satin-like silk blazer and matching wide-leg trousers over a cream top and metallic sandals.
A woman stands against a light gray studio background wearing a bright turquoise-blue satin-like silk blazer.
A woman modeling a matching teal blue satin-like silk blazer and wide-leg trousers set, standing against a light gray studio background.
A model viewed from the back wearing a matching turquoise blue silk suit with a structured blazer and wide-leg trousers, set against a plain light gray studio background.
A model stands against a light gray studio background wearing a metallic bronze-brown silk blazer over a cream collared shirt, paired with wide-leg beige trousers and holding a small metallic clutch.
A woman modeling a rust-brown textured silk blazer over a cream collared shirt and beige trousers, standing against a light gray studio background.
A woman walking on a city crosswalk wearing a rust-brown silk blazer, a cream button-up shirt, beige wide-leg trousers, and holding a black clutch bag.
A woman stands on a balcony wearing a long cream satin dress with a brown silk blazer, a black belt, and holding a black handbag. The background features a warm terracotta-colored building wall and a black wrought-iron railing.
A woman stands against a light gray studio background wearing a bright turquoise-blue satin-like silk blazer and matching wide-leg trousers over a cream top and metallic sandals.
A woman stands against a light gray studio background wearing a bright turquoise-blue satin-like silk blazer.
A woman modeling a matching teal blue satin-like silk blazer and wide-leg trousers set, standing against a light gray studio background.
A model viewed from the back wearing a matching turquoise blue silk suit with a structured blazer and wide-leg trousers, set against a plain light gray studio background.
A model stands against a light gray studio background wearing a metallic bronze-brown silk blazer over a cream collared shirt, paired with wide-leg beige trousers and holding a small metallic clutch.
A woman modeling a rust-brown textured silk blazer over a cream collared shirt and beige trousers, standing against a light gray studio background.
A woman walking on a city crosswalk wearing a rust-brown silk blazer, a cream button-up shirt, beige wide-leg trousers, and holding a black clutch bag.
A woman stands on a balcony wearing a long cream satin dress with a brown silk blazer, a black belt, and holding a black handbag. The background features a warm terracotta-colored building wall and a black wrought-iron railing.

Robin | Women's Silk Blazer

Handcrafted in Mumbai from premium, locally sourced Mulberry Raw Silk. A relaxed fit that maintains a crisp, firm body for a flattering, non-clinging silhouette. Crafted from biocompatible natural protein fibers that interact gently with the body, offering a rare mix of natural wellness benefits, a soft shine, and "quiet luxury."
Material : Silk
Regular price ₹10,950.00
Sale price ₹10,950.00 Regular price
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A woman stands against a light gray studio background wearing a bright turquoise-blue satin-like silk blazer and matching wide-leg trousers over a cream top and metallic sandals.

Robin | Women's Silk Blazer

Behind The Design

The Robin Silk Blazer is a luxurious wardrobe staple that embodies the essence of "quiet luxury." Designed to be more than just a fashion statement, it offers a tailored structure with a crisp, firm body that flatters without clinging. The layered, rich dyeing of the pure silk allows for sleek fusion styling, effortlessly bridging the gap between comfort and high-end power dressing. This piece honors local artisanal heritage, blending a contemporary, elegant aesthetic with the natural health benefits of pure silk.

A close-up of a person's hand winding copper-colored thread onto a spool mounted on a machine in a workshop setting.

How It's Made

Ethical & Artisanal Sourcing: Materials are locally sourced and handmade in Mumbai, integrating sustainable artisanal heritage with options for cruelty-free Ahimsa (Peace) Silk.

High Functionality & Form: Mulberry Raw Silk provides exceptional wrinkle resistance and a strong, crisp body, ensuring the blazer maintains its structured elegance through travel and daily wear.

Superior Thermoregulation: The pure, lightweight protein fibers naturally regulate temperature, keeping the wearer comfortable while interacting gently with the skin.

The Material Difference

Silk vs. Polyester

Life-cycle assessment · per kg of finished fiber · cradle-to-gate (raw material extraction through primary fiber processing)

Silk Polyester
Water 601–3,000 L 62–200 L
Energy 110 kWh/kg (≈396 MJ) 108–217 MJ
CO2 34.0–80.9 kg 2.0–27.2 kg
Source Renewable Fossil fuel
Fertilizer & pesticides Low to moderate None (industrial synthesis instead)
Microplastics None High
End of life Biodegradable Non-biodegradable

Better Moderate Higher impact

The trade-off: Silk is fully biodegradable and sheds no microplastics, but conventional, mechanised silk production is unusually energy- and carbon-intensive, driven by rearing silkworms and reeling/degumming the raw fiber. Polyester compares favourably on energy and CO2 here, though it remains a non-renewable, non-biodegradable synthetic.

Why the ranges vary: These figures reflect conventional, mechanised auto-loom silk processing — the industry-standard basis for most published data. Adam Leaves sources finished, hand-loomed silk fabric directly from artisan weavers, a slower, less mechanised process not separately measured in this dataset.

Methodology & data notes
  • Water: Silk's figure covers mulberry cultivation and the degumming (boiling) process used to extract raw fiber from cocoons. Polyester's water use is mostly for equipment cooling during chemical synthesis.
  • Energy: Silk requires significant energy for reeling and degumming raw cocoons, especially in mechanised production. Polyester relies on energy-intensive petroleum cracking and polymerization, but its per-kg figure is comparatively lower.
  • CO2: Conventional silk's emissions are driven by energy-intensive processing and sericulture (silkworm rearing). Polyester's emissions vary with the energy grid — coal vs. renewables — used in manufacturing.
  • Source: Silk is a protein fiber produced by silkworms feeding on mulberry leaves — renewable, but resource-intensive to process. Polyester is derived entirely from petroleum and natural gas extraction.
  • Fertilizer & pesticides: Mulberry cultivation for silk needs moderate fertilizer but relatively few pesticides. Polyester uses no agricultural chemicals, but its production relies on petrochemical catalysts and industrial processing chemicals instead.
  • Microplastics: Polyester sheds synthetic microfibers during washing, which accumulate in marine ecosystems. Silk is a natural protein fiber and does not shed plastic.
  • End of life: Untreated silk naturally decomposes. Polyester can persist in landfills for centuries, though it can be mechanically recycled.

Our Process

From Fibre to Finish

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