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首页> 外文期刊>Zeitschrift fur Arznei- und Gewurzpflanzen >Improving the High-Frequency Response of PEI-Based Earphone with Sodium Copper Chlorophyllin
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Improving the High-Frequency Response of PEI-Based Earphone with Sodium Copper Chlorophyllin

机译:用氯藻酸钠提高PEI基耳机的高频响应

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The polyetherimide diaphragm, sodium copper chlorophyllin (SCC), and copper ion coating composite used on earphones were observed to improve the high-frequency (10k-14k Hz) performance. This reinforcement phenomenon was expected to make the sound experience brighter and more diverse. By SEM observation, the mixed coating of SCC/Cu2+ on the polyethylenimine (PEI) diaphragm exhibited a planar blocky structure and was tightly bonded to the surface of the PEI polymer without the aid of colloids. The endothermic process of SCC and metal ion complexation was analyzed by isothermal titration calorimetry. The association ratios of SCC/Cu2+ and SCC/Ni2+ were 4/1 and 6/1, respectively, and the SCC/Cu2+ association yielded a stronger binding constant and more free energy. It was expected that the SCC/Cu2+(4/1) mixed liquid would be immobilized on the PEI polymer by multivalent interaction, including hydrogen-bonding networks between carboxyl groups of SCC and amine groups of PEI, and cross-linking of bridging copper ions. We used dimethylethylenediamine (DME) monomer instead of PEI polymer to analyze this multivalent interaction and observed a two-stage exothermic association of SCC/Cu2+(4/1) and DME with a total Gibbs free energy of 15.15 kcal/mol. We observed that the binding energy could be used to explain that the SCC/Cu2+ mixed formulation could be fixed on the surface of the PEI polymer and could enhance the strength of the PEI film. Compared with graphene films, which can continuously improve the performance of high and ultrasonic frequencies, this study was devoted to and was initiated for the purpose of applying porphyrin compounds to improve music performance.
机译:观察到聚醚酰亚胺膜,铜叶绿素(SCC)和耳机上使用的铜离子涂层复合材料,以提高高频(10K-14K Hz)性能。这种强化现象预计会使声音经验更亮,更多样化。通过SEM观察,聚乙基菊氨酸(PEI)隔膜上的SCC / CU2 +的混合涂层表现出平坦的块状结构,并且在没有胶体的借助于胶体的借助于PEI聚合物的表面紧密结合。通过等温滴定热量分析SCC和金属离子络合的吸热过程。 SCC / Cu2 +和SCC / Ni2 +的缔合比分别为4/1和6/1,SCC / Cu2 +关联产生较强的结合常数和更大的自由能。预期SCC / Cu2 +(4/1)混合液将通过多价相互作用固定在PEI聚合物上,包括SCC和PEI的羧基之间的羧基之间的氢键网络,以及桥接铜离子的交联。我们使用二甲基乙二胺(DME)单体代替PEI聚合物,分析这种多价相互作用,并观察到SCC / Cu2 +(4/1)和DME的两级放热关联,总吉布斯自由能为15.15kcal / mol。我们观察到,结合能量可用于说明SCC / Cu2 +混合制剂可以固定在PEI聚合物的表面上,并且可以增强PEI膜的强度。与石墨烯薄膜相比,可以不断提高高和超声波频率的性能,本研究致力于施用卟啉化合物来改善音乐性能的目的。

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