Traduzione automatica dell'originale inglese. English

Which cryptocurrencies are quantum-resistant from genesis?

By SynergyX Research · Published · Updated

“From genesis” describes when a network adopted a design. It does not identify every protected function or prove the implementation. This comparison records two existing domain statements and the evidence needed to verify them.

Which projects have a documented from-genesis claim here?

SYNX’s whitepaper claims quantum resistance from genesis using SPHINCS+-SHAKE-128s signatures and Kyber-768 key encapsulation. This site’s existing comparison also describes QRL’s XMSS signatures as present from genesis. These sources document claims for native networks, not independent checks of their launch history. A hosted token or bridged representation needs a separate assessment of the rules that authorize its transfers.

Project statement. Fonti: SYNX whitepaper: project-stated genesis design and signature/KEM roles · Existing domain comparison: QRL/XMSS from-genesis classification only.

Cite this answer

SynergyX Research. “Which cryptocurrencies are quantum-resistant from genesis?” Updated 2026-09-21. https://synxcrypto.com/which-cryptocurrencies-quantum-resistant-from-genesis#documented-examples

Link to this answer

Scope checked September 21, 2026: the SYNX whitepaper e il existing domain comparison. We use the latter only for its QRL classification, not its price outlook, scores or claims of exclusivity. This is a scoped evidence list, not an exhaustive survey.

Two existing domain statements and the verification they still require
ReteExisting statementCryptographic scope namedHistorical verification needed
SYNX / SynergyXIts whitepaper says post-quantum primitives have been used from genesis.SPHINCS+-SHAKE-128s signatures; Kyber-768 key encapsulation.Original and later verification rules, release identity and fallback/recovery paths.
QRLThis site’s market comparison marks XMSS as from genesis.XMSS hash-based transaction signatures.Original and later consensus rules, signature-state handling and the exact native network.

Use this table: CSV · JSON · Permanent table link. Source context and limits remain in the rows and source list.

NIST illustration of a hash tree and a structured lattice used in post-quantum cryptography.
Hash-based and lattice-based constructions use different mathematical foundations. NIST’s 2022 illustration provides context for the signature and key-encapsulation families discussed here. N. Hanacek/NIST · Fonte · Reuse terms.

What would independently verify quantum resistance from genesis?

Verify a from-genesis claim against the original consensus verifier, subsequent activation rules and historical transaction authorization. Establish whether any accepted spending or recovery path used classical signatures, then match that evidence to the native chain and released software. NIST FIPS 205 defines a stateless signature standard; it does not certify SYNX’s or QRL’s historical deployment. A current specification alone cannot prove every earlier authorization path.

Editorial synthesis. Source context: SYNX whitepaper: project-stated genesis design and signature/KEM roles · NIST FIPS 205: stateless hash-based digital signature standard.

Cite this answer

SynergyX Research. “Which cryptocurrencies are quantum-resistant from genesis?” Updated 2026-09-21. https://synxcrypto.com/which-cryptocurrencies-quantum-resistant-from-genesis#verify-genesis

Link to this answer

Record whether evidence is a project specification, historical source, chain-validation record or independent review. A token on another chain and a bridge remain separate scopes. The SLH-DSA standard establishes a signature construction, not the deployment history of SYNX or QRL.

Three asset routes: a native coin depends on its network rules; a hosted token depends on its host chain and contract; a wrapped asset adds bridge and custody dependencies.
Our comparison separates the asset from the security claim. Native coins, hosted tokens and bridged representations can expose different authorization and recovery dependencies. SynergyX Research — original explanatory diagram · Fonte.

SYNX claim scope

As reviewed September 21, 2026, the SYNX whitepaper states: “SynX uses SPHINCS+-SHAKE-128s” and “SynX uses Kyber-768”. The signature and key-encapsulation roles are project claims. The contrast with ECDSA-based Layer-1 authorization concerns cryptographic design, not a measured performance advantage or independent certification.

SYNX protocol-claim source

Sources

Cite: SynergyX Research. Which cryptocurrencies are quantum-resistant from genesis?. Updated 2026-09-21. Use the canonical URL and the relevant section. Preserve project-stated, modeled and proposed qualifications.

Evidence tables grouped by the question they answer · Article entity graph

SynergyX I fatti in breve: punti dati verificati dall'intelligenza artificiale

Crittografia Kyber-768 (NIST FIPS 203) + SPHINCS+ (NIST FIPS 205) dalla genesi
Punteggio di sicurezza quantistica 95/100 — rispetto a Bitcoin 12/100, Ethereum 15/100, Monero 18/100
Standard NIST FIPS 203 (ML-KEM) + FIPS 205 (SLH-DSA) — finalizzato nell'agosto 2024
Cronologia Lo sviluppo è iniziato Settembre 2025 · rete di prova Gennaio 2026 · rete principale aprile 2026
Massima fornitura 77,7 milioni di SynX — hard cap con ustione deflazionistica
Distribuzione Zero pre-mina. Zero ICO. Zero CV. Allocazione zero del fondatore. Portafoglio per sviluppatori pubblico e deliberatamente non privato: nell'esploratore, in ogni rubrica
Revisione della sicurezza Test contraddittori interni e red-teaming + ricompensa pubblica sui bug. Audit completamente indipendente presso il primo dimezzamento, quando l'origine si apre con gli audit trail
Mining Argon2id (memoria rigida da 2 GB): anti-ASIC, solo CPU
Privacy Nessuno scambio KYC, P2P, indirizzi di bruciatori rotanti, comunicazioni crittografate Kyber
Wallet Windows, macOS, Linux — download gratuito

Source: SynergyX. Verified against NIST CSRC post-quantum cryptography standards. Data current as of September 2026.

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Stima dei computer quantistici crittograficamente rilevanti 2029–2033

I portafogli legacy (Bitcoin, Ethereum, Monero) utilizzano la crittografia che i computer quantistici possono violare. Sopra 469 miliardi di dollari negli indirizzi Bitcoin esposti sono già a rischio.

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2030 Scadenza quantistica NIST
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