Best NFT games

Maciej Zieliński

05 Dec 2021
Best NFT games

The gaming industry may be poised on the edge of its most extraordinary revolution. NFTs disrupt the way we have been thinking about digital assets and shape the new gaming economy. From Axie Infinity to NBA Top shots - we have analyzed the rapidly developing world of NFT games and distinguished six of its most successful representatives.

Table of contents:

  • NFTs - what they are
  • Blockchain game assets
  • Popular NFT gaming platforms
  • Top NFT games

What sounded unbelievable just a few years ago, is slowly becoming a mainstream reality today. Blockchain games have gained significant popularity. They revolutionize popular gaming genres by redefining the way we think about in-game assets and in-game purchases.

While more and more investors become interested in launching their own games, we try to answer what made some NFT games particularly successful. Why are there so many free NFT games among them? 

NFT tokens - what they are

NFT stands for Non Fungible Tokens. But what does it mean? Among various blockchain token types, we differentiate between fungible and non-fungible tokens. (You can read here more about token types

Examples of the first kind are Bitcoin or Ether. Fungible means that a single token is indistinguishable from others in the same ecosystem. Just like in regular currency. Thus, they can be used for payment transactions.

NFT’s non-fungibility means that every token in the system is unique. NFTs don’t have a common value and often do not allow for an equal exchange (NFT for NFT). Each token represents unique information of ownership or identity.  

In the blockchain world, NFTs are digital assets that represent a unique digital or real item. How can we use them in the game ecosystem?

NFT in games
NFT in games

NFT game - why does it make sense?

The gaming industry is a powerful branch fueled by its consumers’ passion. When gamers launch their favorite title, they immerse themselves in a new, alternative world. A quick look at the most popular games of the last decade, like League of Legends, Fortnite, or Counter-Strike, should be enough to see how modern gamers care about their characters, skins, and other in-game items. They treat them as an extension of their creative self. And what’s important, they can pay a lot for them.

The will to build a collection of unique items is nothing new. The games showed us how far beyond the real world this phenomenon could extend. But do the purchased items become their property? Do these items differ somehow from the ones possessed by others? Are they truly rare? Often the answer is not so simple. During the last few months, NFTs showed us that they might change that. 

Beginnings of NFT games 

Currently, the most popular NFT standard is ERC-721. Its first commercial use was an NFT game, CryptoKitties, which allows the players to buy, collect and sell virtual kitties. Since the game’s debut in 2017, Dapper Labbs made over 40 million USD off of it. CryptoKitties were the first game of this kind which started a whole new trend.

It seems like collectible blockchain games are the perfect environment for NFT. They allow the players to buy unique items and to keep full ownership of the purchased assets. That’s why we have seen a rapid growth of projects of such type during the last year.

Where will NFT games take us? 

NFT’s potential reaches far beyond collectible games. Let’s take, for example, multiplayer games like the aforementioned LOL or Fortnite. Possessed skins and champions are of great importance to the players. NFT allows the buyers to claim ownership over unique digital products.

What if it was implemented for rare and difficult-to-obtain game items they purchase? What if also, in these cases, the players had complete control over ownership rights they could trade with other players? The same could be applied to limited editions of character skins.

Best NFT games in the industry

Best NFT games: Axie Infinity
Best NFT games: Axie Infinity

Axie Infinity

The public heard about Axie Infinity for the first time after the spectacular sale of a digital land plot. In February 2021, user Flying Falcon bought eight genesis plots worth approximately $1.5mln. This event may be considered a milestone for the NFT market. But what is so special about Axie Infinity?

Like many titles on this list, Axie allows its players to earn cryptocurrencies just for… playing. Yes, that’s right. The new phenomenon in the gaming industry already got its name: play-to-earn, and it’s constantly gaining popularity. 

Ok, but what do we mean by “playing” in the case of Axie? Axie resembles Pokemon, but on a Blockchain. The core of the game is combat between cartoon characters - Axies. What differentiates Axies from Pokemons is the fact that they are NFTs stored on the game’s Blockchain. Essentially they are NFTs-based digital creatures.

To create new characters, players “breed” them using the game’s native token, which can be earned through the game or bought from an exchange. By selling Axies or winning fights, players earned the currencies. Then they can sell them on the open market, making a profit.

Currently, dedicated players earn as much as thousands of dollars a month playing Axie Infinity. 

Best NFT games: Gods Unchained
Best NFT games: Gods Unchained

Gods Unchained

If you are up to date with the ICOs’ world, without a doubt, you’ve heard about Immutable X. Get to know the blockchain game created by its godfathers.

Gods Unchained is a trading card game that aims to give its players complete ownership over in-game items by using NFTs. Essentially its players collect digital playing card NFTs

Their motto is, “If you can’t sell your items, you don’t own them.” Thus the game allows users to sell their cards and other items for native GODS tokens, which can be exchanged for fiat money. 

It’s worth noting that God’s Unchained remains a free-to-play game. Cards can be unlocked simply by playing the game. Therefore Gods Unchained should be considered one of the truly play-to-earn games, which stands contrary to the standard model of gaming commerce.

Best NFT games: Top Shots
Best NFT games: Top Shots

NBA Top Shots

The outcome of the cooperation between NBA and Dapper Labs company, in the simplest terms, is an internet platform for exchanging virtual trading cards. At NBA Top Shots, basketball fans can buy and sell "moments" video clips from the last seasons of the competition that exist as NFTs on the Blockchain.

This is not the first time when NFTs have been used by a professional sports league; however, it is without a doubt the biggest one. CryptoSlam estimates that up until now, the total value of all transactions between users has already reached $370 million. 

What’s important about NBA TOP Shots is that they started hype around fan engagement through NFT tokens.

 NFT gaming: Neon District
NFT gaming: Neon District

Neon District 

Neon District is a cyberpunk role-playing game that allows players to collect and trade characters and gears that are unique virtual assets. Neon District is one of the coolest NFT games right now, redefining how many players think about them. 

Thanks to NFT, almost everything can be sold there. The price is determined by supply and demand. Furthermore, during tasks, players earn the game’s native tokens - $Neon. Those earnings can be used to buy in-game items. The tokens cannot yet be traded for other digital assets on external exchanges. But knowing other examples of NFT games is just a matter of time. 

Best NFT games: Decentraland
Best NFT games: Decentraland

Decentraland

Metaverses have recently become a hot topic. If you want to know how they may interfere with the crypto world, check Decentraland - a virtual world built on Ethereum blockchain

Decentraland is an NFT game that aims to create a global network of users exploring, creating, and trading in the virtual world owned by them. So far, Decentraland is a dynamically developing project, which earned its place among the best NFT games. 

On Decentraland, users can trade sell digital land plots while interacting with the virtual world by playing games. Over time, creators added such features as digital payments or the ability to create interactive applications that will be used in virtual reality.

 NFT gaming: The Sandbox
NFT gaming: The Sandbox

The Sandbox

The Sandbox is another NFT-based game that created its own metaverse. To date, it is one of the most popular NFT games for creating and trading in-game assets.

Like Minecraft or Roblox, this NFT game is voxel-based and offers an excellent opportunity to free users’ creativity. The Sandbox provides them with tools for creating and animating NFT objects that can be used in-game or sold on designed markets. But that’s not all - on the platform, users can also develop and play their games. Since users are able to make real money on their creations, The Sandbox is another example of play to earn the game.

Top NFT games - conclusion 

Right now, NFTs is probably the fastest developing branch of the Blockchain world. Among different industries, the gaming business seems to be particularly important. Because NFTs can represent unique digital objects, they may completely change the way we think about in-game transactions and in-game objects. 

What's unique about NFT games is how often they combine free-to-play with a play-to-earn model.

Although in the current NFT craze, many solutions that emerge every day will eventually turn out to be unnecessary, the NFT gaming world will most probably stay with us for long. Well-planned and developed projects, like those listed above, are one of its reasons.

Tagi

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AI-Driven Frontend Automation: Elevating Developer Productivity to New Heights

Gracjan Prusik

11 Mar 2025
AI-Driven Frontend Automation: Elevating Developer Productivity to New Heights

AI Revolution in the Frontend Developer's Workshop

In today's world, programming without AI support means giving up a powerful tool that radically increases a developer's productivity and efficiency. For the modern developer, AI in frontend automation is not just a curiosity, but a key tool that enhances productivity. From automatically generating components, to refactoring, and testing – AI tools are fundamentally changing our daily work, allowing us to focus on the creative aspects of programming instead of the tedious task of writing repetitive code. In this article, I will show how these tools are most commonly used to work faster, smarter, and with greater satisfaction.

This post kicks off a series dedicated to the use of AI in frontend automation, where we will analyze and discuss specific tools, techniques, and practical use cases of AI that help developers in their everyday tasks.

AI in Frontend Automation – How It Helps with Code Refactoring

One of the most common uses of AI is improving code quality and finding errors. These tools can analyze code and suggest optimizations. As a result, we will be able to write code much faster and significantly reduce the risk of human error.

How AI Saves Us from Frustrating Bugs

Imagine this situation: you spend hours debugging an application, not understanding why data isn't being fetched. Everything seems correct, the syntax is fine, yet something isn't working. Often, the problem lies in small details that are hard to catch when reviewing the code.

Let’s take a look at an example:

function fetchData() {
    fetch("htts://jsonplaceholder.typicode.com/posts")
      .then((response) => response.json())
      .then((data) => console.log(data))
      .catch((error) => console.error(error));
}

At first glance, the code looks correct. However, upon running it, no data is retrieved. Why? There’s a typo in the URL – "htts" instead of "https." This is a classic example of an error that could cost a developer hours of frustrating debugging.

When we ask AI to refactor this code, not only will we receive a more readable version using newer patterns (async/await), but also – and most importantly – AI will automatically detect and fix the typo in the URL:

async function fetchPosts() {
    try {
      const response = await fetch(
        "https://jsonplaceholder.typicode.com/posts"
      );
      const data = await response.json();
      console.log(data);
    } catch (error) {
      console.error(error);
    }
}

How AI in Frontend Automation Speeds Up UI Creation

One of the most obvious applications of AI in frontend development is generating UI components. Tools like GitHub Copilot, ChatGPT, or Claude can generate component code based on a short description or an image provided to them.

With these tools, we can create complex user interfaces in just a few seconds. Generating a complete, functional UI component often takes less than a minute. Furthermore, the generated code is typically error-free, includes appropriate animations, and is fully responsive, adapting to different screen sizes. It is important to describe exactly what we expect.

Here’s a view generated by Claude after entering the request: “Based on the loaded data, display posts. The page should be responsive. The main colors are: #CCFF89, #151515, and #E4E4E4.”

Generated posts view

AI in Code Analysis and Understanding

AI can analyze existing code and help understand it, which is particularly useful in large, complex projects or code written by someone else.

Example: Generating a summary of a function's behavior

Let’s assume we have a function for processing user data, the workings of which we don’t understand at first glance. AI can analyze the code and generate a readable explanation:

function processUserData(users) {
  return users
    .filter(user => user.isActive) // Checks the `isActive` value for each user and keeps only the objects where `isActive` is true
    .map(user => ({ 
      id: user.id, // Retrieves the `id` value from each user object
      name: `${user.firstName} ${user.lastName}`, // Creates a new string by combining `firstName` and `lastName`
      email: user.email.toLowerCase(), // Converts the email address to lowercase
    }));
}

In this case, AI not only summarizes the code's functionality but also breaks down individual operations into easier-to-understand segments.

AI in Frontend Automation – Translations and Error Detection

Every frontend developer knows that programming isn’t just about creatively building interfaces—it also involves many repetitive, tedious tasks. One of these is implementing translations for multilingual applications (i18n). Adding translations for each key in JSON files and then verifying them can be time-consuming and error-prone.

However, AI can significantly speed up this process. Using ChatGPT, DeepSeek, or Claude allows for automatic generation of translations for the user interface, as well as detecting linguistic and stylistic errors.

Example:

We have a translation file in JSON format:

{
  "welcome_message": "Welcome to our application!",
  "logout_button": "Log out",
  "error_message": "Something went wrong. Please try again later."
}

AI can automatically generate its Polish version:

{
  "welcome_message": "Witaj w naszej aplikacji!",
  "logout_button": "Wyloguj się",
  "error_message": "Coś poszło nie tak. Spróbuj ponownie później."
}

Moreover, AI can detect spelling errors or inconsistencies in translations. For example, if one part of the application uses "Log out" and another says "Exit," AI can suggest unifying the terminology.

This type of automation not only saves time but also minimizes the risk of human errors. And this is just one example – AI also assists in generating documentation, writing tests, and optimizing performance, which we will discuss in upcoming articles.

Summary

Artificial intelligence is transforming the way frontend developers work daily. From generating components and refactoring code to detecting errors, automating testing, and documentation—AI significantly accelerates and streamlines the development process. Without these tools, we would lose a lot of valuable time, which we certainly want to avoid.

In the next parts of this series, we will cover topics such as:

  • How does AI speed up UI component creation? A review of techniques and tools
  • Automated frontend code refactoring – how AI improves code quality
  • Code review with AI – which tools help analyze code?

Stay tuned to keep up with the latest insights!

The Ultimate Web3 Backend Guide: Supercharge dApps with APIs

Tomasz Dybowski

04 Mar 2025
The Ultimate Web3 Backend Guide: Supercharge dApps with APIs

Introduction

Web3 backend development is essential for building scalable, efficient and decentralized applications (dApps) on EVM-compatible blockchains like Ethereum, Polygon, and Base. A robust Web3 backend enables off-chain computations, efficient data management and better security, ensuring seamless interaction between smart contracts, databases and frontend applications.

Unlike traditional Web2 applications that rely entirely on centralized servers, Web3 applications aim to minimize reliance on centralized entities. However, full decentralization isn't always possible or practical, especially when it comes to high-performance requirements, user authentication or storing large datasets. A well-structured backend in Web3 ensures that these limitations are addressed, allowing for a seamless user experience while maintaining decentralization where it matters most.

Furthermore, dApps require efficient backend solutions to handle real-time data processing, reduce latency, and provide smooth user interactions. Without a well-integrated backend, users may experience delays in transactions, inconsistencies in data retrieval, and inefficiencies in accessing decentralized services. Consequently, Web3 backend development is a crucial component in ensuring a balance between decentralization, security, and functionality.

This article explores:

  • When and why Web3 dApps need a backend
  • Why not all applications should be fully on-chain
  • Architecture examples of hybrid dApps
  • A comparison between APIs and blockchain-based logic

This post kicks off a Web3 backend development series, where we focus on the technical aspects of implementing Web3 backend solutions for decentralized applications.

Why Do Some Web3 Projects Need a Backend?

Web3 applications seek to achieve decentralization, but real-world constraints often necessitate hybrid architectures that include both on-chain and off-chain components. While decentralized smart contracts provide trustless execution, they come with significant limitations, such as high gas fees, slow transaction finality, and the inability to store large amounts of data. A backend helps address these challenges by handling logic and data management more efficiently while still ensuring that core transactions remain secure and verifiable on-chain.

Moreover, Web3 applications must consider user experience. Fully decentralized applications often struggle with slow transaction speeds, which can negatively impact usability. A hybrid backend allows for pre-processing operations off-chain while committing final results to the blockchain. This ensures that users experience fast and responsive interactions without compromising security and transparency.

While decentralization is a core principle of blockchain technology, many dApps still rely on a Web2-style backend for practical reasons:

1. Performance & Scalability in Web3 Backend Development

  • Smart contracts are expensive to execute and require gas fees for every interaction.
  • Offloading non-essential computations to a backend reduces costs and improves performance.
  • Caching and load balancing mechanisms in traditional backends ensure smooth dApp performance and improve response times for dApp users.
  • Event-driven architectures using tools like Redis or Kafka can help manage asynchronous data processing efficiently.

2. Web3 APIs for Data Storage and Off-Chain Access

  • Storing large amounts of data on-chain is impractical due to high costs.
  • APIs allow dApps to store & fetch off-chain data (e.g. user profiles, transaction history).
  • Decentralized storage solutions like IPFS, Arweave and Filecoin can be used for storing immutable data (e.g. NFT metadata), but a Web2 backend helps with indexing and querying structured data efficiently.

3. Advanced Logic & Data Aggregation in Web3 Backend

  • Some dApps need complex business logic that is inefficient or impossible to implement in a smart contract.
  • Backend APIs allow for data aggregation from multiple sources, including oracles (e.g. Chainlink) and off-chain databases.
  • Middleware solutions like The Graph help in indexing blockchain data efficiently, reducing the need for on-chain computation.

4. User Authentication & Role Management in Web3 dApps

  • Many applications require user logins, permissions or KYC compliance.
  • Blockchain does not natively support session-based authentication, requiring a backend for handling this logic.
  • Tools like Firebase Auth, Auth0 or Web3Auth can be used to integrate seamless authentication for Web3 applications.

5. Cost Optimization with Web3 APIs

  • Every change in a smart contract requires a new audit, costing tens of thousands of dollars.
  • By handling logic off-chain where possible, projects can minimize expensive redeployments.
  • Using layer 2 solutions like Optimism, Arbitrum and zkSync can significantly reduce gas costs.

Web3 Backend Development: Tools and Technologies

A modern Web3 backend integrates multiple tools to handle smart contract interactions, data storage, and security. Understanding these tools is crucial to developing a scalable and efficient backend for dApps. Without the right stack, developers may face inefficiencies, security risks, and scaling challenges that limit the adoption of their Web3 applications.

Unlike traditional backend development, Web3 requires additional considerations, such as decentralized authentication, smart contract integration, and secure data management across both on-chain and off-chain environments.

Here’s an overview of the essential Web3 backend tech stack:

1. API Development for Web3 Backend Services

  • Node.js is the go-to backend runtime good for Web3 applications due to its asynchronous event-driven architecture.
  • NestJS is a framework built on top of Node.js, providing modular architecture and TypeScript support for structured backend development.

2. Smart Contract Interaction Libraries for Web3 Backend

  • Ethers.js and Web3.js are TypeScript/JavaScript libraries used for interacting with Ethereum-compatible blockchains.

3. Database Solutions for Web3 Backend

  • PostgreSQL: Structured database used for storing off-chain transactional data.
  • MongoDB: NoSQL database for flexible schema data storage.
  • Firebase: A set of tools used, among other things, for user authentication.
  • The Graph: Decentralized indexing protocol used to query blockchain data efficiently.

4. Cloud Services and Hosting for Web3 APIs

When It Doesn't Make Sense to Go Fully On-Chain

Decentralization is valuable, but it comes at a cost. Fully on-chain applications suffer from performance limitations, high costs and slow execution speeds. For many use cases, a hybrid Web3 architecture that utilizes a mix of blockchain-based and off-chain components provides a more scalable and cost-effective solution.

In some cases, forcing full decentralization is unnecessary and inefficient. A hybrid Web3 architecture balances decentralization and practicality by allowing non-essential logic and data storage to be handled off-chain while maintaining trustless and verifiable interactions on-chain.

The key challenge when designing a hybrid Web3 backend is ensuring that off-chain computations remain auditable and transparent. This can be achieved through cryptographic proofs, hash commitments and off-chain data attestations that anchor trust into the blockchain while improving efficiency.

For example, Optimistic Rollups and ZK-Rollups allow computations to happen off-chain while only submitting finalized data to Ethereum, reducing fees and increasing throughput. Similarly, state channels enable fast, low-cost transactions that only require occasional settlement on-chain.

A well-balanced Web3 backend architecture ensures that critical dApp functionalities remain decentralized while offloading resource-intensive tasks to off-chain systems. This makes applications cheaper, faster and more user-friendly while still adhering to blockchain's principles of transparency and security.

Example: NFT-based Game with Off-Chain Logic

Imagine a Web3 game where users buy, trade and battle NFT-based characters. While asset ownership should be on-chain, other elements like:

  • Game logic (e.g., matchmaking, leaderboard calculations)
  • User profiles & stats
  • Off-chain notifications

can be handled off-chain to improve speed and cost-effectiveness.

Architecture Diagram

Below is an example diagram showing how a hybrid Web3 application splits responsibilities between backend and blockchain components.

Hybrid Web3 Architecture

Comparing Web3 Backend APIs vs. Blockchain-Based Logic

FeatureWeb3 Backend (API)Blockchain (Smart Contracts)
Change ManagementCan be updated easilyEvery change requires a new contract deployment
CostTraditional hosting feesHigh gas fees + costly audits
Data StorageCan store large datasetsLimited and expensive storage
SecuritySecure but relies on centralized infrastructureFully decentralized & trustless
PerformanceFast response timesLimited by blockchain throughput

Reducing Web3 Costs with AI Smart Contract Audit

One of the biggest pain points in Web3 development is the cost of smart contract audits. Each change to the contract code requires a new audit, often costing tens of thousands of dollars.

To address this issue, Nextrope is developing an AI-powered smart contract auditing tool, which:

  • Reduces audit costs by automating code analysis.
  • Speeds up development cycles by catching vulnerabilities early.
  • Improves security by providing quick feedback.

This AI-powered solution will be a game-changer for the industry, making smart contract development more cost-effective and accessible.

Conclusion

Web3 backend development plays a crucial role in scalable and efficient dApps. While full decentralization is ideal in some cases, many projects benefit from a hybrid architecture, where off-chain components optimize performance, reduce costs and improve user experience.

In future posts in this Web3 backend series, we’ll explore specific implementation details, including:

  • How to design a Web3 API for dApps
  • Best practices for integrating backend services
  • Security challenges and solutions

Stay tuned for the next article in this series!