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Electrodeposition: Electrocarving during Electrodeposition Growth (Adv. Mater. 51/2018)
Advanced Materials ( IF 27.4 ) Pub Date : 2018-12-17 , DOI: 10.1002/adma.201870395
Yanling Wang 1 , Liyan Zhao 1 , Yu Zhao 2 , William Yi Wang 3 , Yongfeng Liu 4 , Changdong Gu 4 , Jinshan Li 3 , Guigen Zhang 2 , Tony Jun Huang 5 , Shikuan Yang 1, 4
Advanced Materials ( IF 27.4 ) Pub Date : 2018-12-17 , DOI: 10.1002/adma.201870395
Yanling Wang 1 , Liyan Zhao 1 , Yu Zhao 2 , William Yi Wang 3 , Yongfeng Liu 4 , Changdong Gu 4 , Jinshan Li 3 , Guigen Zhang 2 , Tony Jun Huang 5 , Shikuan Yang 1, 4
Affiliation
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The controllable electrochemical fabrication of well‐defined silver‐oxide clathrate micro‐/nanostructures is realized by Shikuan Yang and co‐workers in article number 1805686 by intentionally manipulating the previously neglected electrocarving process during electrodeposition growth (MEDEG). The dominance of the electrocarving and the electrodeposition growth process can be immediately manipulated by varying the deposition voltage and/or the composition of the electrolyte, enabling controllable synthesis of micro‐/nanostructures of various materials directly on a substrate.
中文翻译:
电沉积:电沉积生长过程中的电雕刻(Adv。Mater.51 / 2018)
杨世宽及其同事在文章编号1805686中通过在电沉积生长(MEDEG)期间有意操纵先前被忽略的电雕工艺,实现了对定义明确的笼形氧化银银/纳米结构的可控电化学加工。通过改变沉积电压和/或电解质的成分,可以立即控制电雕刻和电沉积生长过程的优势,从而可以直接在基板上进行各种材料的微/纳米结构的可控合成。
更新日期:2018-12-17

中文翻译:

电沉积:电沉积生长过程中的电雕刻(Adv。Mater.51 / 2018)
杨世宽及其同事在文章编号1805686中通过在电沉积生长(MEDEG)期间有意操纵先前被忽略的电雕工艺,实现了对定义明确的笼形氧化银银/纳米结构的可控电化学加工。通过改变沉积电压和/或电解质的成分,可以立即控制电雕刻和电沉积生长过程的优势,从而可以直接在基板上进行各种材料的微/纳米结构的可控合成。
