Ethereum’s Scalability Dilemma and ZK Technology Breakthroughs
As the most important smart contract platform, Ethereum supports thousands of decentralized applications. However, high Gas fees and transaction congestion during peak times have become pain points for many users. Although Ethereum 2.0 is still gradually being rolled out, the reality is that Layer 2 scaling solutions have become the most feasible current approach.
Among many Layer 2 technologies, ZK rollup stands out with its unique cryptographic mechanisms. They bundle a large number of transactions off-chain, verify transaction validity through zero-knowledge proofs, and then submit them to the mainnet, ensuring security while significantly reducing transaction costs. Compared to Optimistic Rollup’s challenge period mechanism, ZK rollup offers faster finality and stronger privacy protection.
Core Mechanism of ZK Rollup: Simplified Explanation
Imagine ZK rollup as an efficient express transfer station. In traditional models, each package (transaction) must be checked individually; ZK rollup consolidates hundreds of packages into one box, proves all are legitimate with a “verification certificate” (zero-knowledge proof), and then transports it to the destination all at once.
The advantages of this system are threefold:
Off-chain processing, on-chain verification — Transactions are executed in an independent virtual machine, greatly reducing the burden on the mainnet.
Cryptographic commitments — Zero-knowledge proofs ensure transaction authenticity without revealing specific details.
Data efficiency — Only minimal proof data needs to be uploaded, reducing block space usage.
In contrast, Optimistic Rollup requires waiting for a challenge period of a week to confirm transactions, whereas ZK rollup completes in seconds. This is why more developers and users are turning their attention to the ZK ecosystem.
Key ZK Rollup Projects to Watch in 2025
Manta Network: Pioneer of Privacy DeFi
Manta Network leverages zk-SNARKs technology to give DeFi interactions a “cloak of invisibility.” Users can conduct transactions and asset exchanges in a fully private environment, with transaction details encrypted but still verifiable.
Project Highlights:
Circulating Market Cap: $33.62M (as of December 2025)
Core advantage is privacy-first design, still rare in the public chain ecosystem
Rapid growth: surpassing multiple competitors in a short period, becoming an important Layer 2 option
For users concerned about transaction privacy, Manta Network offers a rare choice.
Linea: Simple and Efficient Scaling Solution
Linea adopts a standard ZK rollup architecture, using zk-SNARKs for transaction verification. Its design philosophy is to enable developers to migrate painlessly — existing Ethereum smart contracts can be deployed directly.
Project Data:
Circulating Market Cap: $107.32M
Launch Date: August 2023
Planned Token Airdrop (details to be announced)
Linea’s appeal lies in “plug-and-play” — no need to rewrite code, developers can quickly build applications.
Starknet: Quantum-Level Security Promise
Starknet uses STARKs instead of SNARKs, meaning it does not require a trusted setup process. More importantly, STARKs are inherently immune to quantum computing, laying a foundation for future network security.
Project Scale:
Circulating Market Cap: $400.50M
Launch Date: February 2022
Token STRK used for Gas fees and governance
StarkNet’s tech stack is relatively unique — its Cairo language offers developers a more flexible contract programming experience, though with a steeper learning curve.
zkSync Era: Ethereum-Compatible High-Performance Player
Built by Matter Labs, zkSync Era strikes a balance between performance and user experience. It is fully compatible with EVM, meaning developers can code directly in Solidity, with Gas fees reduced by over ten times.
Key Metrics:
Historical TVL Peak: $555M
Launch Date: March 2023
Token ZKS for governance and staking
zkSync Era represents a practical approach combining “ease of use + performance.”
ZetaChain: Breaking Barriers Between Chains
ZetaChain takes a different route — it aims beyond Layer 2 scaling, targeting cross-chain interactions. Using zk-SNARKs and its unique “ZetaML” technology, applications can operate assets and data across multiple chains simultaneously.
Platform Data:
Circulating Market Cap: $80.38M
Launch Date: February 2021
Token ZETA used for Gas fees and cross-chain incentives
For dApps requiring multi-chain liquidity, ZetaChain offers new possibilities.
Taiko: Decentralized Sequencing Innovator
Taiko’s “Based Sequencing” is a noteworthy innovation. Traditional rollups are often controlled by a single centralized sequencer, which can be a censorship point. Taiko hands this power over to Layer 1 validators, fundamentally eliminating centralization risks.
Project Progress:
Testnet launched in January 2024
Funding scale: $37M
Fully Ethereum-compatible
This design is more attractive to users seeking decentralization.
Scroll and Polygon zkEVM: Ecosystem Integrators
Scroll focuses on maximizing transaction throughput, while Polygon zkEVM leverages the network effects of the Polygon ecosystem for early advantage. Both support EVM compatibility but with different focuses.
Aztec Protocol and ZKFair: Specialized Innovations
Aztec Protocol provides a programming toolkit for privacy computations (Noir language), while ZKFair is designed for DEX transactions, specifically preventing front-running — something centralized exchanges cannot do.
Three Major Trends in the ZK Ecosystem in 2025
Trend 1: Breakthroughs in Performance Ceiling
With batch processing technology and GPU acceleration, the throughput of a single Layer 2 is approaching 10,000 TPS, enough to support mainstream financial scenarios.
Trend 2: Accelerated Application Layer Innovation
Moving beyond “cheap and fast” account transfers, focusing on deep optimization for privacy DeFi, cross-chain DEX, derivatives trading, and other specialized scenarios.
Trend 3: Fragmented Competition
Various ZK projects are evolving from general-purpose solutions toward differentiated offerings, requiring users to choose chains that best fit their specific needs.
Technical Challenges Remaining for ZK Rollup
Although promising, ZK rollup technology still faces several challenges:
Proof Generation Efficiency — Creating cryptographic proofs remains time-consuming, sometimes taking several seconds.
Programming Complexity — Developers need deep understanding of zero-knowledge proofs, with high learning costs.
Liquidity Fragmentation — Multiple chains disperse users and funds.
Cross-Chain Bridge Risks — Asset transfers between Layer 2 and mainnet still rely on trusted infrastructure.
Ecosystem Governance Costs — Each chain requires independent governance systems and security audits.
Outlook: Next Steps for the ZK Ecosystem
From now until 2026, several key breakthroughs are expected:
Hardware Acceleration for Proof Systems — Dedicated chips will significantly speed up ZK proof generation.
Native Cross-Layer 2 Interactions — Users will no longer need to return to the mainnet for cross-chain operations.
Balancing Privacy and Compliance — How to protect privacy while meeting regulatory requirements.
More Application Layer Innovations — Expect dedicated chains in gaming, lending, derivatives, and other verticals.
The ZK Rollup coin market is still in its early stages, but the technological trajectory is already clear. For investors and developers optimistic about the Ethereum ecosystem, understanding the differences and strengths of various projects is essential to finding real opportunities in this scalability race.
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ZK Rollup Coin 2025: Which Layer 2 Solutions Are Worth Watching
Ethereum’s Scalability Dilemma and ZK Technology Breakthroughs
As the most important smart contract platform, Ethereum supports thousands of decentralized applications. However, high Gas fees and transaction congestion during peak times have become pain points for many users. Although Ethereum 2.0 is still gradually being rolled out, the reality is that Layer 2 scaling solutions have become the most feasible current approach.
Among many Layer 2 technologies, ZK rollup stands out with its unique cryptographic mechanisms. They bundle a large number of transactions off-chain, verify transaction validity through zero-knowledge proofs, and then submit them to the mainnet, ensuring security while significantly reducing transaction costs. Compared to Optimistic Rollup’s challenge period mechanism, ZK rollup offers faster finality and stronger privacy protection.
Core Mechanism of ZK Rollup: Simplified Explanation
Imagine ZK rollup as an efficient express transfer station. In traditional models, each package (transaction) must be checked individually; ZK rollup consolidates hundreds of packages into one box, proves all are legitimate with a “verification certificate” (zero-knowledge proof), and then transports it to the destination all at once.
The advantages of this system are threefold:
In contrast, Optimistic Rollup requires waiting for a challenge period of a week to confirm transactions, whereas ZK rollup completes in seconds. This is why more developers and users are turning their attention to the ZK ecosystem.
Key ZK Rollup Projects to Watch in 2025
Manta Network: Pioneer of Privacy DeFi
Manta Network leverages zk-SNARKs technology to give DeFi interactions a “cloak of invisibility.” Users can conduct transactions and asset exchanges in a fully private environment, with transaction details encrypted but still verifiable.
Project Highlights:
For users concerned about transaction privacy, Manta Network offers a rare choice.
Linea: Simple and Efficient Scaling Solution
Linea adopts a standard ZK rollup architecture, using zk-SNARKs for transaction verification. Its design philosophy is to enable developers to migrate painlessly — existing Ethereum smart contracts can be deployed directly.
Project Data:
Linea’s appeal lies in “plug-and-play” — no need to rewrite code, developers can quickly build applications.
Starknet: Quantum-Level Security Promise
Starknet uses STARKs instead of SNARKs, meaning it does not require a trusted setup process. More importantly, STARKs are inherently immune to quantum computing, laying a foundation for future network security.
Project Scale:
StarkNet’s tech stack is relatively unique — its Cairo language offers developers a more flexible contract programming experience, though with a steeper learning curve.
zkSync Era: Ethereum-Compatible High-Performance Player
Built by Matter Labs, zkSync Era strikes a balance between performance and user experience. It is fully compatible with EVM, meaning developers can code directly in Solidity, with Gas fees reduced by over ten times.
Key Metrics:
zkSync Era represents a practical approach combining “ease of use + performance.”
ZetaChain: Breaking Barriers Between Chains
ZetaChain takes a different route — it aims beyond Layer 2 scaling, targeting cross-chain interactions. Using zk-SNARKs and its unique “ZetaML” technology, applications can operate assets and data across multiple chains simultaneously.
Platform Data:
For dApps requiring multi-chain liquidity, ZetaChain offers new possibilities.
Taiko: Decentralized Sequencing Innovator
Taiko’s “Based Sequencing” is a noteworthy innovation. Traditional rollups are often controlled by a single centralized sequencer, which can be a censorship point. Taiko hands this power over to Layer 1 validators, fundamentally eliminating centralization risks.
Project Progress:
This design is more attractive to users seeking decentralization.
Scroll and Polygon zkEVM: Ecosystem Integrators
Scroll focuses on maximizing transaction throughput, while Polygon zkEVM leverages the network effects of the Polygon ecosystem for early advantage. Both support EVM compatibility but with different focuses.
Aztec Protocol and ZKFair: Specialized Innovations
Aztec Protocol provides a programming toolkit for privacy computations (Noir language), while ZKFair is designed for DEX transactions, specifically preventing front-running — something centralized exchanges cannot do.
Three Major Trends in the ZK Ecosystem in 2025
Trend 1: Breakthroughs in Performance Ceiling With batch processing technology and GPU acceleration, the throughput of a single Layer 2 is approaching 10,000 TPS, enough to support mainstream financial scenarios.
Trend 2: Accelerated Application Layer Innovation Moving beyond “cheap and fast” account transfers, focusing on deep optimization for privacy DeFi, cross-chain DEX, derivatives trading, and other specialized scenarios.
Trend 3: Fragmented Competition Various ZK projects are evolving from general-purpose solutions toward differentiated offerings, requiring users to choose chains that best fit their specific needs.
Technical Challenges Remaining for ZK Rollup
Although promising, ZK rollup technology still faces several challenges:
Outlook: Next Steps for the ZK Ecosystem
From now until 2026, several key breakthroughs are expected:
The ZK Rollup coin market is still in its early stages, but the technological trajectory is already clear. For investors and developers optimistic about the Ethereum ecosystem, understanding the differences and strengths of various projects is essential to finding real opportunities in this scalability race.