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Inkjettable conductive adhesive for use in microelectronics and microsystems technology

机译:用于微电子学和微系统技术的可喷墨导电胶

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Ink jet is an accepted technology for dispensing small volumes of material (50-500 picolitres). Currently traditional metal-filled conductive adhesives cannot be processed by ink jetting (owing to their relatively high viscosity and the size of filler material particles). Smallest droplet size achievable by traditional dispensing techniques is in the range of 150 μm, yielding proportionally larger adhesive dots on the substrate. Electrically conductive inks are available on the market with metal particles (gold or silver) < 20 nm suspended in a solvent at 30-50 wt%. After deposition, the solvent is eliminated and electrical conductivity is enabled by a high metal ratio in the residue. Some applications include a sintering step. These nano-filled inks do not offer an adhesive function. Work reported here presents materials with both functions, adhesive and conductive. This newly developed silver filled adhesive has been applied successfully by piezo-ink jet and opens a new dimension in electrically conductive adhesives technology. The present work demonstrates feasibility of an inkjettable, isotropically conductive adhesive in the form of a silver loaded resin with a two-step curing mechanism: In the first-step, the adhesive is dispensed (jetted) and precured leaving a 'dry' surface. The second step consists of assembly (wetting of the 2nd part) and final curing.
机译:喷墨是用于分配少量物料(50-500皮升)的公认技术。当前,传统的金属填充的导电粘合剂不能通过喷墨加工(由于它们的相对较高的粘度和填充材料颗粒的尺寸)。传统分配技术可实现的最小液滴尺寸在150μm的范围内,从而在基材上产生成比例更大的粘合剂点。市场上可买到的导电油墨是将浓度小于20 nm的金属颗粒(金或银)悬浮在30-50 wt%的溶剂中。沉积后,去除溶剂,并通过残留物中的高金属比实现导电性。一些应用包括烧结步骤。这些纳米填充油墨不具有粘合功能。此处报道的工作介绍了兼具粘合和导电功能的材料。这种新开发的填充银的胶粘剂已成功地通过压电喷墨技术应用,为导电胶粘剂技术开辟了新的领域。本工作展示了具有两步固化机制的载银树脂形式的可喷墨,各向同性导电粘合剂的可行性:第一步,将粘合剂分配(喷射)并预固化,留下“干燥”表面。第二步包括组装(第二部分的润湿)和最终固化。

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