Selection of Particle Size and Solvent to Lower the Pressure Required for Metal-to-Metal Bonding using Silver Nanoparticle Pastes

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Bondability under lower applied pressures (0.5 and 1 MPa) was investigated on the basis of the interaction force generated between the particles and the solvent used during sintering. In the case of single (unmixed) solvents, the shear strength decreased monotonously with an increase in the molecular weight of the solvent used, regardless of the size of the particles used. This was because the decomposition of solvents with high molecular weight was not complete till bonding at 300°C. In the case of mixed solvents, the shear strength achieved using a mix of triethylene glycolol (TEG) and polyethylene glycol (PEG) 200 increased and was greater than that achieved using conventional solders. The results obtained could be explained well by the dynamics of the solvent and the particles. Thus, it was surmised that the capillary force can be effective in joining larger particles together under lower applied pressures.

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詳細情報 詳細情報について

  • CRID
    1390001204724931328
  • NII論文ID
    130004445763
  • DOI
    10.2207/qjjws.31.197s
  • COI
    1:CAS:528:DC%2BC3sXhslejs7fN
  • ISSN
    24348252
    02884771
  • 本文言語コード
    en
  • データソース種別
    • JaLC
    • Crossref
    • CiNii Articles
    • KAKEN
  • 抄録ライセンスフラグ
    使用不可

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