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Shedding light on electrodeposition dynamics tracked in situ via soft X-ray coherent diffraction imaging
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作者 George Kourousias Benedetto Bozzini +4 位作者 Alessandra Gianoncelli Michael W. M. Jones Mark Junker Grant van Riessen Maya Kiskinova 《Nano Research》 SCIE EI CAS CSCD 2016年第7期2046-2056,共11页
The in situ physicochemical analysis of nanostructured functional materials is crucial for advances in their design and production. X-ray coherent diffraction imaging (CDI) methods have recently demonstrated impress... The in situ physicochemical analysis of nanostructured functional materials is crucial for advances in their design and production. X-ray coherent diffraction imaging (CDI) methods have recently demonstrated impressive potential for characterizing such materials with a high spatial resolution and elemental sensitivity; however, moving from the current ex situ static regime to the in situ dynamic one remains a challenge. By combining soft X-ray ptychography and single-shot keyhole CDI, we performed the first in situ spatiotemporal study on an electrodeposition process in a sealed wet environment, employed for the fabrication of oxygen-reduction catalysts, which are key components for alkaline fuel cells and metal-air batteries. The results provide the first experimental demonstration of theoretically predicted Turing-Hopf electrochemical pattern formation resulting from morphochemical coupling, adding a new dimension for the in-depth in situ characterization of electrodeposition processes in space and time. 展开更多
关键词 in situ electrodeposition X-ray coherent diffractionimaging keyhole coherentdiffraction imaging (CDI) X-ray ptychography
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羧基改性聚乙烯醇硼酸钾水凝胶电解质制备及应用研究 被引量:1
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作者 吕婉婉 陈胜 姜猛进 《电子元件与材料》 CAS CSCD 2017年第11期22-26,共5页
以聚乙烯醇(PVA)与羧基改性聚乙烯醇(CMPVA)为基体,通过原位电沉积法在活性炭电极表面分别制备出聚乙烯醇硼酸钾(PVAPB)水凝胶电解质(HGE)和羧基改性聚乙烯醇硼酸钾(CMPVAPB)HGE。对这两种HGE的结构、形貌、热稳定性和电化学性能进行研... 以聚乙烯醇(PVA)与羧基改性聚乙烯醇(CMPVA)为基体,通过原位电沉积法在活性炭电极表面分别制备出聚乙烯醇硼酸钾(PVAPB)水凝胶电解质(HGE)和羧基改性聚乙烯醇硼酸钾(CMPVAPB)HGE。对这两种HGE的结构、形貌、热稳定性和电化学性能进行研究和对比。结果表明:两种HGE均具有稳定的化学结构,并表现出良好耐热性及优异的电化学性能;与PVAPB HGE相比,CMPVAPB HGE与电解质盐的相容性更好,电解质盐浓度更高。由CMPVAPB HGE组装的超级电容器(SC),其离子电导率(1.23×10^(–3)S/cm)和比容量(94.9F/g)高于PVAPB HGE组装的SC(分别为1.11×10^(–3) S/cm和90.6 F/g)。 展开更多
关键词 羧基改性聚乙烯醇 聚乙烯醇硼酸钾 水凝胶电解质 超级电容器 原位电沉积法 活性炭
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