Joined October 2025
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Before using a privacy lane, the user must hold NULLA on the parachain, not just on the relay chain. NULLA on the relay chain must be transferred to Para 20A00 (ProofHub) OR Para 2002 (ScanProof) first.
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Mainnet Tokenomics and Update Connect your Solana and Base wallets and deposit NULLA by 12/06/2026. Claim bridged WNULLA on Base starting 13/06/2026 with a 1:1.25 ratio. Relaunch Pool We will mint 1.25 billion tokens. This supply will ensure that we have sufficient tokens to: - Cover the incremental ratio allocation for early buyers. - Provide the initial validator stake operated by the core team. - Supply liquidity for the bridged token in the Uniswap pool. The pool will be funded using the dollar-denominated liquidity generated after early buyers deposit their NULLA tokens into the designated collection address. An appropriate amount of WNULLA tokens will be paired with this liquidity to maintain the same token price that existed prior to the aforementioned sale. Mainnet Economics The network will launch with an annual inflation rate of 8%, distributed across each era (every 24 hours). The newly minted tokens will be allocated as follows: 80% to stakers, subject to a 2-day bonding period. 20% to the Treasury. This inflation rate may be adjusted through governance over the lifetime of the chain. The purpose of inflation is to incentivize validators and stakers until transaction fee revenue becomes sufficient to secure the network without the need to mint additional tokens. Network Fees Network transaction fees will be distributed as follows: 20% to the block author. 80% to the Treasury. Treasury Funds In the long term, treasury reserves may also be used to support token-burning mechanisms, reducing the circulating supply and helping offset the inflation introduced during the network’s early stages.
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We are extending the deposit deadline until Tuesday! Stay tuned!
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User calls lock_for_bridge (base_recipient, amount) on relay chain. NULLA transfers from the user account to the Bridge Vault. A TokensLocked { sender, base_recipient, amount, nonce} event is emitted as the relayer trigger.
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Token enter the reserve pool on the homomorphic lane. A Pedersen commitment is computed immediately at deposit time.
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This infographic illustrates the user-facing functionality of the post-quantum privacy layer, stay tuned for more updates!
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The Deposit app is now live on the official website: nulla.network/deposit You can also access it directly from the nulla.network homepage, as demonstrated in the video. The tokenomics will be shared in some hours, stay tuned!
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We’re excited to update the Deposit dApp tomorrow with more information for our users. Stay tuned!
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We are also working on the official release of the wallet, which will be necessary to fully utilize the capabilities of the Nulla environment. For now, we are defining the UI components and will proceed with full testing on the testnet in the coming days.
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ProofHub emphasizes hash-based and lattice-based primitives like BLAKE3, ML-DSA-44, and Merkle trees, while ScanProof focuses on additive homomorphic ideas using Pedersen commitments, Schnorr, Bulletproofs, and Blake2b-256 . Major updates on Monday, don't miss it.
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In this test, we demonstrate a complete bridge cycle between the NULLA Network and Sepolia. The process begins with the NULLA wallet 5HYwzZdzkGHHfjaCmTjvD3spQvEn3Fom6oKbqKPv3yhsgtkr and the Sepolia wallet 0xd9b1604c5a2d291ce9fb3d30fbbab0ae196493e2. When tokens are locked on NULLA, the relayer detects the on-chain event and triggers a mint transaction on Sepolia: 0x0c5f59db45151caad3fda749ea67b908e32c9d941e7c4943a1d3fcc1fc11816d For the return flow, tokens are burned on Sepolia using the following transaction: 0x1062c55b3907acfe89727c673d08e30d481122174e01c06a03f7edbc2c29a7f8 Afterward, the relayer executes the unlock operation on NULLA, which is recorded in block: 0x8e0be14eb2195a30bb5b111f1c90eedfb63ead93e91fca8781d78b2026bdc124 The complete flow is therefore: Lock on NULLA → Mint on Sepolia → Burn on Sepolia → Unlock on NULLA This confirms a successful end-to-end bidirectional bridge operation.
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Here we show the output gathered during the registration of the parachains on the new runtime. As you can see, this time we are implementing two proof parachains: ProofHub and ScanProof. The second one is designed to introduce a parallel encryption route enforcing homomorphic encryption. This will allow users to choose their preferred level of privacy by deciding on which parachain to deposit their NULLA tokens. The behavior of these parachains, together with the rest of the ecosystem, is currently under testing. ScanProof will not be made public immediately, as we first want to test it without exposing the RPC. Our ecosystem is growing rapidly and becoming more articulated, so we also intend to provide detailed tutorials throughout this upcoming week.
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The new runtime for the relay has been upgraded. We decided to start the testnet with a clean slate. This upgrade is central to what we are building next. - A custom pallet for the Ethereum bridge implementation. - A bridge between the parachain and the relay chain.
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We have rebranded our website as we approach important milestones for NULLA. We continue to believe in our product, and we thank the community for continuing to support us! Anyway, the new design is out: nulla.network/ Stay tuned for the next update!
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End-to-end bridge stack running clean! Rust pallet tests (lock/unlock, replay protection, origin guards) Solidity contract suite, all green in one shot. From relay chain to Ethereum in one codebase, stay tuned for the next update. $NULLA
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End-to-end bridge stack running clean! Rust pallet tests (lock/unlock, replay protection, origin guards) Solidity contract suite, all green in one shot. From relay chain to Ethereum in one codebase, stay tuned for the next update. solana:HthQKKW6M9Q8pb27r9xoqjfviiJ3kzdojP8TKqjJpump
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Solidity tests passing on WrappedNULLA NullaBridge contracts. Mint protection, nonce replay prevention, operator rotation, all covered. Also confirmed the pallet is wired into the nulla relay runtime at index 249. Building in public.
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We're building a native bridge for the Nulla relay chain so NULLA tokens can flow to Ethereum and trade on Uniswap. The design: lock NULLA on-chain → relayer mints wNULLA ERC-20 on Sepolia for the first tests and then on mainnet. Reverse direction works too, burn wNULLA, unlock NULLA on the relay. No third-party bridge dependency.
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This showcases the first steps being taken to build the trusted bridge that will allow users to bridge tokens on Ethereum and enable the creation of a trading pool on Uniswap. The first command shows the files built so far for this implementation, while the second provides a deeper look into the bridge pallets, specifically the pallet’s public interface. It then moves on to the output of the first test run for the implementation, followed by a quick overview of the Solidity contracts, we are moving smooth, stay tuned for more exciting updates coming soon.
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Parachains are now officially live on the nullascan.com explorer. You can already browse them, and we currently have one collator running for the ProofHub parachain and another for the simulated RWA parachain. This is a major step forward, as we can now begin expanding the bridging capabilities between parachains. At the moment, communication is handled through XCM messaging for the privacy workflow, and the next phase is enabling token bridging to create a fully interconnected Layer 1 ecosystem.
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