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Deciphering the levelling mechanism of sorbitol for copper electrodeposition via electrochemical and computational chemistry study

机译:通过电化学和计算化学研究解密山梨糖醇对铜电沉积的调平机制

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摘要

A combined method using electrochemical analysis, molecular dynamic simulation and quantum chemical calculation was employed to reveal the effects of sorbitol on copper electrodeposition from the pyrophosphate bath. It was demonstrated that sorbitol is a desirable leveler. A possible mechanism responsible for the levelling improvement was that sorbitol displayed lower adsorption energy on the electrode surface than pyrophosphate, due to its smaller energy gap. Therefore, adding sorbitol into the pyrophosphate bath could significantly elevate the adsorption capacity of copper pyrophosphate complex ions {[Cu(P2O7)2]6?} on cathode, thereby increasing the diffusion coefficient (D) of [Cu(P2O7)2]6?and the number density (N) of copper nuclei. And the increasedDandNare beneficial to improve the bath's levelling power. It should also be pointed out that sorbitol did not influence the purity and electrical conductivity of copper deposit as well as its nucleation mechanism, i.e., an irreversible and instantaneous nucleation process with three-dimensional growth of nuclei controlled by the diffusion of [Cu(P2O7)2]6?.
机译:采用电化学分析、分子动力学模拟和量子化学计算相结合的方法,研究了山梨醇对焦磷酸盐镀液中铜电沉积的影响。山梨醇是一种理想的匀染剂。与焦磷酸盐相比,山梨醇在电极表面的吸附能更低,这可能是由于其较小的能隙。因此,在焦磷酸盐溶液中加入山梨醇可以显著提高焦磷酸盐铜络合物离子{[Cu(P2O7)2]6?}的吸附容量从而增加[Cu(P2O7)2]6?铜原子核的数密度。而增加的D和NAR有助于提高镀液的整平能力。还应指出的是,山梨醇不影响铜镀层的纯度和导电性,也不影响其成核机制,即不可逆的瞬时成核过程,由[Cu(P2O7)2]6?的扩散控制核的三维生长?。

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