分散剂
乙烯醇
聚电解质
材料科学
化学工程
锌
Zeta电位
色散(光学)
水溶液
分散稳定性
胶体
高分子化学
纳米颗粒
化学
聚合物
有机化学
复合材料
纳米技术
工程类
冶金
物理
光学
作者
Chia‐Chen Li,Ming‐Jyun Li,Yung‐Pin Huang
摘要
Abstract This study proposes appropriate dispersants for dispersing aluminum‐doped zinc oxide ( AZO ) nanopowder in the commonly used organic solvent‐dimethylacetamide ( DMAC ). The dispersion efficiencies and stabilization mechanisms of four DMAC ‐soluble dispersants, poly(acrylic acid) ( PAA ), polyethyleneimine ( PEI ), poly(vinyl alcohol) ( PVA ), and poly(vinyl pyrrolidone) ( PVP ), are compared. The non‐polyelectrolyte‐based PVA and PVP surprisingly exhibit greater efficiency than the polyelectrolyte‐based PAA and PEI . This is because the nano AZO is soft‐agglomerated in DMAC and easily de‐agglomerated by the application of ultrasonic power; therefore, the increased viscosity contributed from additions of PVA and PVP efficiently prevent reagglomeration and sedimentation of the nanopowder. This stabilization mechanism is evidenced by an experimental analysis of zeta potentials and rheology and also by theoretical calculations based on Stokes’ law.
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