BESTGRAPHENE Co., Ltd – Graphene Products

  • Precision Equipment
  • Electric materials
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Enhance the performance of metal pastes with graphene additives.

Simultaneously improve conductivity, dispersibility, and shape stability
BESTGRAPHENE Co., Ltd graphene additives

Overview

Best Graphene Co.’s graphene additives are functional materials that enhance conductivity, dispersion stability, and shape stability when added in small amounts to metal pastes and conductive materials.

Through specialized surface treatment (Functionalized Graphene), they exhibit high compatibility with materials without the need for additional binders.

Features

Ensures stable conductivity even in fine electrodes
→ Suppresses variations in electrical properties, even in MLCC electrodes with increasingly thin and highly multilayered structures

Improves dispersion in electrode pastes, reducing sedimentation and re-aggregation
→ Minimizes paste condition changes during coating and standby time, stabilizing electrode quality

Enhances paste flow properties and shape stability
→ Reduces coating unevenness and film thickness variations, contributing to uniform electrode layers

Delivers performance with small additions while minimizing impact on existing formulations
→ Enables performance improvement without major changes to current processes or material designs

Self-adsorbs to electrode materials without the need for binders
→ Ensures high compatibility with electrode pastes while maintaining formulation flexibility

What Happens When Added to Metal Paste

Conductivity → Contributes to improvement

Dispersion → Contributes to uniformity

Sedimentation → Less likely to occur

Shape Stability → Reduces paste sagging and flow

Process → No major changes required

Intended Applications

・Metal electrode pastes for MLCC

・Conductive pastes for electronic components

・Conductive inks and functional inks

・Functional additives for electronic materials

・This product utilizes highly dispersion-stable functionalized graphene and can also be applied to non-aqueous systems.