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Use of ultrasound To Modified Electrodeposited Silver and Silver-Tin Microstructures and Composition without Chemical Additives

机译:使用超声波改装电沉积银和银锡微结构和组成而无需化学添加剂

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Silver coatings structures identified by XRD vs. current density reveal two main behaviours: one barely structured and the other with a preferential [110] orientation. Changing from quiet to mechanically stirred conditions, the current density threshold moves from 2.5mA/cm~2 to 5mA/cm~2. The threshold shift to 15 mA/cm~2 under sonication (575 kHz or 20 kHz), while agitation check with calibration is kept constant. Using ultrasound, it is possible to modify significantly the coatings without relying on chemical additives. In the case of silver-tin alloys, the current density variations coupled to the use of ultrasound lead to significant variations (color, crystalline composition and alloy composition). For an equivalent hydrodynamic agitation, silver is predominant at low current density and tin prevails at higher ones. If low frequency ultrasound is applied, Ag_3Sn replaces the tin, and for high frequency, the coating is formed by an intermetallic compound of tin and silver irrespective of the current density.
机译:由XRD与电流密度识别的银涂层结构显示出两个主要行为:一个勉强结构,另一个优先[110]取向。从安静变为机械搅拌条件,电流密度阈值从2.5mA / cm〜2移动到5mA / cm〜2。在超声处理(575 kHz或20 kHz)下阈值转移到15 mA / cm〜2,同时使用校准搅拌检查保持恒定。使用超声波,可以在不依赖化学添加剂的情况下显着改变涂层。在银锡合金的情况下,电流密度变化耦合到使用超声波导致显着的变化(颜色,结晶组合物和合金组合物)。对于等效的流体动力学搅拌,银在低电流密度下占主导地位,锡占较高的锡。如果施加低频超声,则Ag_3SN取代锡,并且对于高频,涂层由锡和银的金属间化合物而形成,而不管电流密度如何。

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