Camera Comfort
Essential comfort, without compromise.
In the heart of the San Marco sestiere, steps from Piazza San Marco, the Grand Canal, the Rialto Bridge and La Fenice theatre, Corte di Gabriela is a charming boutique hotel combining Venice's grand history with contemporary comfort.
Born from the expert restoration of a 19th-century palazzo, once home to a prestigious Venetian family of lawyers, the hotel preserves the soul of its past through exposed beams, original frescoes and period architectural details, harmoniously paired with modern furnishings and design pieces by the great masters of the twentieth century.
The rooms and suites offer an intimate and personal stay, featuring parquet floors and Venetian terrazzo, modern technology and bathrooms finished to the finest detail.
A discreet and elegant hospitality, rooted in the values of authenticity and sustainability, transforms every stay into a unique and refined way of experiencing Venice.
Discover our suites → →Sustainability also means paying close attention to the reduction of plastic waste. Our eco-friendly courtesy line is 95% recyclable, we use only glass bottles in the minibar, and we carefully select local zero-kilometre products.
Seasonal ingredients, thoughtful choices and packaging designed to reduce the use of paper are part of our everyday philosophy. For us, sustainability is not a trend, but a natural way of welcoming our guests.
We are proud to be among the pioneers of eco-friendly hospitality in Venice and to hold the DCA Certification, one of the achievements we value most.
It allows us to live in the most beautiful city in the world. That is why treating it with care is essential. In every room of our boutique hotel in Venice, the shower is always powerful and perfectly hot, yet thanks to an innovative energy-saving heat recovery system, Corte di Gabriela is able to recover and reuse water heat down to the very last joule.
Our independent heating system also allows guests to manage the room temperature completely autonomously, without increasing heat dispersion or unnecessary energy consumption.