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Co-Field-Reconciled Direct Growth of 6-Inch Monolayer Graphene on Insulating Substrates
Academic achievements

Co-Field-Reconciled Direct Growth of 6-Inch Monolayer Graphene on Insulating Substrates

A collaborative research team led by Professor Jingyu Sun from Soochow University, Academician Zhongfan Liu from Peking University and the Beijing Graphene Institute (BGI), and Researcher Qingqing ...

Academic achievementsTurbulent Flow-Driven Synthesis of Graphene–Skinned Boron Nitride Heterostructures for Dendrite-Free Potassium Metal Batteries

Turbulent Flow-Driven Synthesis of Graphene–Skinned Boron Nitride Heterostructures for Dendrite-Free Potassium Metal Batteries

Potassium metal batteries are considered one of the most promising candidates for next-generation energy storage systems due to their high energy density and fast ionic transport kinetics. However,...

Academic achievementsBreakthrough in Self-Strengthened hBN/Graphene Moiré Superlattice Membranes

Breakthrough in Self-Strengthened hBN/Graphene Moiré Superlattice Membranes

A research team from Peking University has published a significant study in Advanced Functional Materials. They designed and fabricated a self-strengthened two-dimensional hBN/graphene (hBN/Gr) Moi...

Academic achievementsControlled Synthesis of Graphene-Skinned Al₂O₃ Powder via FB-CVD for High-Performance Thermal Management

Controlled Synthesis of Graphene-Skinned Al₂O₃ Powder via FB-CVD for High-Performance Thermal Management

With the rapid evolution of AI, 6G communications, and high-performance computing, the thermal power density of electronic devices is growing exponentially. Thermal management has become a critical...

Academic achievementsBGI Achieves Major Breakthrough in Layer-Controlled Growth of Graphene Films

BGI Achieves Major Breakthrough in Layer-Controlled Growth of Graphene Films

Two-dimensional (2D) van der Waals materials with atomic-layer thickness exhibit layer-dependent quantum properties and have attracted widespread attention. Among them, bilayer and few-layer graphe...

Academic achievementsBreakthrough in Ultra-Flat Copper Substrate Enables High-Quality Graphene Epitaxy

Breakthrough in Ultra-Flat Copper Substrate Enables High-Quality Graphene Epitaxy

Background Heteroepitaxy is a cornerstone of modern semiconductor technology. Its success relies heavily on high-quality epitaxial layer growth on single-crystal substrates with matched lattice s...

Academic achievementsMultiscale Thermal Transport Breakthrough: BGI Advances High-Performance Graphene–Copper Composites with “Mengene Copper”

Multiscale Thermal Transport Breakthrough: BGI Advances High-Performance Graphene–Copper Composites with “Mengene Copper”

With the rapid development of next-generation technologies such as 5G communications, artificial intelligence (AI), and high-performance computing (HPC), electronic devices are experiencing a subst...

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