Qiaodan TG 2.0 LEILI 2 MAX "Green" QDB023264295 - Unisex Running Shoe Green
High Visibility. Maximum Protection. Every Mile.
The Qiaodan TG 2.0 LEILI 2 MAX "Green" (QDB023264295) transitions the brand's max-cushioned super-trainer into a vibrant, high-visibility performance statement. Built for ultimate shock absorption over extended road miles, it blends structural endurance with maximum rebound energy — in a colorway that demands to be seen.
Design Concept
Known in select markets as the "Charged Mint" or "Avocado" edition, the Green variant channels a nature-inspired palette through a rich, energetic green engineered jacquard mesh matrix across the upper, accented by subtle gradient shifts on the massive midsole sidewalls. The color palette accentuates the aggressive fast-rolling rocker geometry while maximizing road visibility during dawn and dusk training runs.
High-Stack Nitrogen Compound Midsole
The collection's signature 45mm heel stack height — built from a nitrogen-infused compound — delivers a plush, deeply protective landing pad with up to 92% energy return under compression. Soft enough to absorb. Fast enough to rebound.
Encapsulated Nylon Plate
A full-length geometrically shaped nylon plate is embedded directly within the dual-density foam layer. It mitigates unwanted lateral roll and maintains structural integrity over the high platform without inducing the harsh stiffness of a traditional carbon racing plate — stability that doesn't punish.
Breathable Engineering
The denser jacquard variant fabric optimizes midfoot containment and structural durability across the upper while keeping overall weight remarkably nimble compared to traditional heavy trainers — engineered protection that doesn't slow you down.
Sizing Advice
- True to size (TTS) in length with a plush, accommodating midfoot chamber for most runners.
- Go half a size up if you have exceptionally wide feet or a high instep — the green jacquard upper is slightly thicker and more structured around the forefoot boundaries than standard summer mesh versions, which can create localized pressure during long-mileage swelling.
