DeFi Intel

17 things we're excited about for crypto in 2026 paper

Paper · PageRank 0.0015

Also known as: big-ideas-things-excited-about-crypto-2026

Overview

"17 things we're excited about for crypto in 2026" is a16z crypto's annual big-ideas list, published on a16zcrypto.com and also released as a thread on the firm's X account. Its central claim is that the industry's infrastructure build-out has largely paid off, so the next phase of growth should come from real users, application adoption, the intersection of AI and blockchains, and maturing on-chain finance rather than from speculative narratives. Individual items include better stablecoin on- and off-ramps, thinking about tokenization of real-world assets in a more crypto-native way, stablecoins triggering a bank ledger upgrade cycle, AI agents transacting with a "Know Your Agent" identity layer, decentralized messaging and "secrets-as-a-service," larger prediction markets, staked media, and zkVM provers reaching roughly 10,000x overhead.

Within the DeFi Intel graph, 17 things we're excited about for crypto in 2026 connects to 2 tracked entities, most strongly to a16z Crypto, a16z crypto research.

Relations

Top connections in the DeFi Intel knowledge graph (confidence-weighted, 2 of 2 total).

RelationConnected entityConfidence
published_ina16z Crypto85%
authoreda16z crypto research85%

Frequently asked questions

What is the overall thesis of the list?

That the dividends of crypto's infrastructure build-out are largely realized, so future growth will be driven by real users, application adoption, AI-blockchain integration and maturing on-chain finance rather than speculative narratives.

What does the list say about stablecoins?

It highlights better on- and off-ramps, a more crypto-native approach to tokenizing real-world assets, and stablecoins unlocking a bank ledger upgrade cycle and new payment models. It cites roughly $46 trillion of stablecoin transaction volume in 2025.

What does it predict for zero-knowledge proving?

That in 2026 zkVM provers will reach roughly 10,000x overhead with memory footprints in the hundreds of megabytes.

Sources

Facts on this page were verified against the following sources.