In addition, a lot of developments have been made in the exploration o的简体中文翻译

In addition, a lot of developments

In addition, a lot of developments have been made in the exploration of the effects of the size, shape, microstructure, and surface conditions (e.g. surface defects and capping ligands) of BaTiO3 NCs on their dielectric and ferroelectric properties with the utilization of many advancedcharacterization methods such as piezoresponse force microscopy (PFM),61–63 neutron scattering,64–67 and electron microscopy.68–71 To further elucidate the underlying mechanism of the dielectricand ferroelectric behavior of BaTiO3 at the nanoscale, several models have been proposed.72–74 Moreover, the practical application of BaTiO3/polymer nanocomposites requires that the BaTiO3 NCs can be homogeneously dispersed within the polymer matrix without phase separation or particle agglomeration. This has triggered recent significant research efforts into the development of surface modification techniques that enable high-quality BaTiO3/polymer nanocomposites with uniform dispersion and favorable morphology as compared to traditional simple mixing approaches.
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此外,在探索 BaTiO3 NCs 的尺寸、形状、微观结构和表面条件(例如表面缺陷和封端配体)对其介电和铁电性能的影响方面也取得了大量进展。许多先进的<br>表征方法,例如压电响应力显微镜 (PFM)、61-63 中子散射、64-67 和电子显微镜。 68-71 进一步阐明电介质的潜在机制<br>和 BaTiO3 在纳米尺度上的铁电行为,已经提出了几种模型。72-74 此外,BaTiO3/聚合物纳米复合材料的实际应用要求 BaTiO3 NCs 可以均匀地分散在聚合物基质中,而不会发生相分离或颗粒团聚。这引发了最近对表面改性技术开发的重大研究工作,与传统的简单混合方法相比,这些技术能够使高质量的 BaTiO3/聚合物纳米复合材料具有均匀的分散和有利的形态。
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结果 (简体中文) 2:[复制]
复制成功!
In addition, a lot of developments have been made in the exploration of the effects of the size, shape, microstructure, and surface conditions (e.g. surface defects and capping ligands) of BaTiO3 NCs on their dielectric and ferroelectric properties with the utilization of many advancedcharacterization methods such as piezoresponse force microscopy (PFM),61–63 neutron scattering,64–67 and electron microscopy.68–71 To further elucidate the underlying mechanism of the dielectricand ferroelectric behavior of BaTiO3 at the nanoscale, several models have been proposed.72–74 Moreover, the practical application of BaTiO3/polymer nanocomposites requires that the BaTiO3 NCs can be homogeneously dispersed within the polymer matrix without phase separation or particle agglomeration. This has triggered recent significant research efforts into the development of surface modification techniques that enable high-quality BaTiO3/polymer nanocomposites with uniform dispersion and favorable morphology as compared to traditional simple mixing approaches.<br>
正在翻译中..
结果 (简体中文) 3:[复制]
复制成功!
此外,利用许多先进的技术,在探索BaTiO3 NCs的尺寸、形状、微结构和表面条件(例如surface缺陷和封端配体)对其介电和铁电性能的影响方面取得了许多进展表征方法,如压电响应力显微镜(PFM),61–63中子散射,64–67和电子显微镜。68–71为了进一步阐明电介质的潜在机理和钛酸钡在纳米尺度上的铁电行为,已经提出了几种模型。72–74此外,钛酸钡/聚合物纳米复合材料的实际application要求钛酸钡NCs可以均匀地分散在聚合物基体中,而没有相分离或颗粒团聚。这引发了最近在表面改性技术开发方面的重大研究工作,与传统的简单混合方法相比,该技术能够使高质量的钛酸钡/聚合物纳米复合材料具有均匀的分散和良好的形态。
正在翻译中..
 
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