Murano Glass Triedri Wall Sconces In Deep Emerald Green | Hand-Blown Venetian Prism Column Lights, Chrome Frame, Rare Italian Lighting - A Pair
Chairish$2,890
Murano Glass Triedri Wall Sconces In Deep Emerald Green | Hand-Blown Venetian Prism Column Lights, Chrome Frame, Rare Italian Lighting - A Pair
Chairish$2,890
DUTIES FREE Rare pair of Murano glass wall sconces composed of hand-blown emerald green triedri prisms in a sculptural chrome frame. Versatile vertical or horizontal installation. Collectible Venetian lighting with strong architectural presence. A striking pair of Murano glass column sconces, crafted in Venice using the traditional triedri technique, one of the most iconic expressions of Italian glassmaking. Each sconce is composed of seven hand-blown triangular crystal prisms (triedri) in a deep, saturated emerald green. Set within a polished chrome frame, the structure forms a bold architectural column that transforms light into a layered, jewel-toned glow. When illuminated, the prismatic surfaces scatter light across the surrounding walls, creating depth, movement, and atmosphere ideal for interiors that embrace dramatic, sculptural lighting. The full monochrome green composition makes this pair particularly rare. In Murano lighting, solid-color triedri sconces in rich jewel tones are highly collectible, especially when preserved as a matched symmetrical pair. These sconces offer dual installation options: Mounted vertically for a classic, elongated column effect Rotated horizontally for a contemporary, gallery-like composition Both orientations create a strong visual impact, making them ideal for custom interior design projects. DIMENSIONS (each sconce) Height: 12.40 in (31.5 cm) Width: 8.15 in (20.7 cm) Depth from wall: 4.30 in (10.9 cm) Glass prism height: 12.40 in 7 hand-blown Murano glass triedri prisms per sconce (deep emerald green) Polished chrome metal frame Traditional Venetian glassmaking technique R7S-118 lamp holder (1 per sconce) LED bulbs strongly recommended for optimal diffusion and efficiency