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Novel high-entropy oxides for energy storage and conversion:From fundamentals to practical applications 被引量:9
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作者 Zi-Yu Liu Yu Liu +4 位作者 yujie xu Hualiang Zhang Zongping Shao Zhenbin Wang Haisheng Chen 《Green Energy & Environment》 SCIE EI CAS CSCD 2023年第5期1341-1357,共17页
High-entropy oxides(HEOs)are gaining prominence in the field of electrochemistry due to their distinctive structural characteristics,which give rise to their advanced stable and modifiable functional properties.This r... High-entropy oxides(HEOs)are gaining prominence in the field of electrochemistry due to their distinctive structural characteristics,which give rise to their advanced stable and modifiable functional properties.This review presents fundamental preparations,incidental characterizations,and typical structures of HEOs.The prospective applications of HEOs in various electrochemical aspects of electrocatalysis and energy conversion-storage are also summarized,including recent developments and the general trend of HEO structure design in the catalysis containing oxygen evolution reaction(OER)and oxygen reduction reaction(ORR),supercapacitors(SC),lithium-ion batteries(LIBs),solid oxide fuel cells(SOFCs),and so forth.Moreover,this review notes some apparent challenges and multiple opportunities for the use of HEOs in the wide field of energy to further guide the development of practical applications.The influence of entropy is significant,and high-entropy oxides are expected to drive the improvement of energy science and technology in the near future. 展开更多
关键词 High-entropy oxides ELECTROCHEMISTRY Energy storage and conversion
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高强度超疏水光子晶体涂层的制备及在织物防伪的应用 被引量:1
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作者 徐育杰 田苗 +5 位作者 梅子昂 方思琰 董岩 王建华 司鹏翔 张丹 《高分子材料科学与工程》 EI CAS CSCD 北大核心 2023年第11期119-128,共10页
文中将单分散SiO_(2)微球和聚氨酯(PU)胶体在织物表面共组装制备了颜色可调高强度光子结构色织物。PU作为一种黏合剂,在自组装过程中,进入SiO_(2)微球之间的空隙,增强了微球间的黏结力,从而提高了光子结构色涂层的黏附力与剪切应力。此... 文中将单分散SiO_(2)微球和聚氨酯(PU)胶体在织物表面共组装制备了颜色可调高强度光子结构色织物。PU作为一种黏合剂,在自组装过程中,进入SiO_(2)微球之间的空隙,增强了微球间的黏结力,从而提高了光子结构色涂层的黏附力与剪切应力。此外,通过调节PU的添加量,以及对光子结构色涂层颜色的调控,以及单一粒径对应多种结构色。当水滴在光子结构色涂层表面后,浸入非晶光子晶体结构中,取代了其中的空隙,使得非晶光子晶体的折射率对比度下降,从而导致结构色消失。因此,通过在光子晶体织物表面喷涂一层具有低表面能的透明聚二甲基硅氧烷(PDMS)进行疏水封装,可实现超疏水功能。通过选择性制备亲水和疏水光子晶体涂层,可实现水响应的织物二维码防伪技术。当织物遇到水后,二维码消失(A类)或显现(B类),烘干后二维码显现(A类)或消失(B类),使防伪技术更加隐蔽,拓宽了结构色的应用范围。 展开更多
关键词 光子晶体 结构色 超疏水 共组装 织物防伪
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