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Water-based Low-temperature Silver Paste

Updated: 2026-07-22

Overview

Water-based low-temperature silver paste is an advanced conductive material designed for modern electronics manufacturing. Unlike traditional solvent-based silver pastes, it utilizes water as the primary carrier fluid, significantly reducing VOC emissions and workplace hazards. The paste contains finely dispersed silver particles (typically 60-80% by weight) in an aqueous polymer matrix. The key innovation lies in its low curing temperature (120-200°C), enabling its use on heat-sensitive substrates like PET films and paper-based electronics. This characteristic makes it particularly valuable for emerging applications in flexible and printed electronics where conventional high-temperature processes are impractical.

Physical and Chemical Properties

千住0.3银无铅高温锡膏 SMT贴片用焊锡浆生产厂 环保丝的价位无锡樊川锡业有限公司

The paste exhibits a viscosity range of 5,000-50,000 cP (adjustable for different printing methods) and achieves bulk resistivity of 5-20 μΩ·cm after curing. Its water-based nature provides excellent wettability on diverse substrates while maintaining good shelf stability (typically 6-12 months when properly stored). Curing transforms the material into a continuous conductive network through particle sintering and polymer cross-linking. The resulting films show good mechanical flexibility (withstanding >1% strain without cracking) and adhesion strength (>3B per ASTM D3359). Environmental testing typically reveals stable performance under 85°C/85% RH conditions for 1,000 hours.

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Main Applications

In photovoltaics, the paste is screen-printed as front-side electrodes for heterojunction solar cells (HJT) where low-temperature processing preserves delicate silicon structures. It demonstrates 90-95% of bulk silver conductivity while enabling cell efficiencies exceeding 23%. The flexible electronics industry utilizes it for printing antennas in RFID tags (achieving read ranges over 8 meters) and touch sensor patterns on PET films. Emerging applications include medical wearables where biocompatibility and flexibility are crucial. Printed heaters using this material can reach 80°C at 12V with uniform heat distribution.

Safety and Storage

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As a water-based product, it presents significantly lower health risks than solvent alternatives. However, prolonged skin contact should be avoided due to potential mild irritation from silver particles. Standard PPE (gloves, goggles) is recommended during handling. Storage requires protection from freezing (which can destabilize the emulsion) and extreme heat (accelerating solvent evaporation). Unopened containers maintain stability for 6-12 months at 15-25°C. Once opened, use within 3 months to prevent viscosity changes. Waste material should be treated as silver-containing waste per local regulations.

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B2B Procurement Guide

When sourcing, specify: 1) Silver content (affects conductivity and price), 2) Viscosity range (matches your printing method), 3) Curing profile (compatibility with your equipment), and 4) Substrate compatibility data. Technical datasheets should include resistivity measurements, adhesion test results, and environmental reliability data. For large orders (100kg+), negotiate bulk discounts while ensuring consistent quality through certificate of analysis for each batch. Consider suppliers offering technical support for process optimization. Sample testing should verify performance under your specific application conditions before full-scale procurement.

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