Description
Moonbirds is an Ethereum-based NFT collection featuring 10,000 unique, utility-enabled owl avatars with a variety of rarity-powered traits. Created by PROOF, the project is known for its blend of digital art ownership, community engagement, and continuous utility. A distinctive feature of Moonbirds is "nesting," where holders can lock their NFTs to accrue additional benefits over time, such as rarity increases and access to exclusive events and drops, fostering long-term community involvement. Furthermore, Moonbirds offer its holders access to the Proof ecosystem, including private club membership, educational content, and collaborative events within a decentralized blockchain framework. With the promise of future projects like Project Highrise, Moonbirds aims to extend its utilities into a uniquely constructed metaverse, prioritizing connection and community. This innovative approach distinguishes Moonbirds in the crowded space of web3, paving the way for a novel digital collectibility and engagement model.
Moonbirds is an Ethereum-based NFT collection featuring 10,000 unique, utility-enabled owl avatars with a variety of rarity-powered traits. Created by PROOF, the project is known for its blend of digital art ownership, community engagement, and continuous utility. A distinctive feature of Moonbirds is "nesting," where holders can lock their NFTs to accrue additional benefits over time, such as rarity increases and access to exclusive events and drops, fostering long-term community involvement. Furthermore, Moonbirds offer its holders access to the Proof ecosystem, including private club membership, educational content, and collaborative events within a decentralized blockchain framework. With the promise of future projects like Project Highrise, Moonbirds aims to extend its utilities into a uniquely constructed metaverse, prioritizing connection and community. This innovative approach distinguishes Moonbirds in the crowded space of web3, paving the way for a novel digital collectibility and engagement model.