Molecular R&D & Global Innovation Center
Integrating quantum chemistry DFT supercomputing clusters, ton-scale continuous pilot testing platforms, and 9,260+ active global patents to power advanced materials.
Four Pillars of SinoChemix R&D System
1. AI-Driven Molecular Discovery & Supercomputing
Equipped with 20 PFLOPS dedicated quantum chemistry clusters. Leveraging deep learning and DFT Density Functional Theory to predict catalyst active sites and polymer Tg in hours.
2. Continuous Pilot & Scale-Up Validation Hub
Houses 16 continuous high-temperature high-pressure pilot lines (kg to ton scale), solving engineering heat/mass transfer challenges during industrial scale-up.
3. Academician Workstation & Joint Laboratories
Established 8 joint labs with Tsinghua University, Zhejiang University, Chinese Academy of Sciences, ETH Zurich, and MIT to tackle key polymer innovations.
4. Global Intellectual Property Protection
Comprehensive patent portfolio across US, EU, Japan, China, and 45 industrial nations protecting metallocene catalysts, ultrapure resins, and CCUS polyols.
Patent Vault Online Search System
Search by patent number, technical field, or inventor name
Constrained Geometry Metallocene Catalyst for Continuous Ethylene/1-Octene Solution Polymerization
Invented ultra-high thermal stability bridged constrained geometry titanium metallocene complexes maintaining >10⁶ g Polymer/(mol Ti·h) catalytic activity at 160°C, precisely controlling octene comonomer distribution in POE resins.
Continuous Multistage Porous Chelating Resin for ppt-level Fe/Cu Metal Ion Purification in 7nm Hydrogen Peroxide
Grafted triethylenetetramine polydentate ligands onto functionalized macroporous styrene-divinylbenzene backbone, achieving deep chelation down to 5 ppt for Fe³⁺ and Cu²⁺ in 31% H2O2 with extended breakthrough capacity.
Low-Pressure High-Efficiency Copolymerization of CO₂ and Propylene Oxide for Polycarbonate Polyols
Developed rigid diimine-backed dinuclear cobalt-salen complex synthesizing linear polycarbonate diols at 1.5 MPa CO₂ pressure with >99% selectivity, completely eliminating cyclic carbonate side products.
Research Reports & Industry Technical Whitepapers
Regularly publishing molecular structure insights, ultra-pure analysis methodologies, and CCUS negative-carbon synthesis whitepapers.