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XH超高频皮肤整形仪治疗面部色素性皮肤病变
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作者 吴祖煌 刘敏 占新华 《中国美容医学》 CAS 2003年第3期261-262,共2页
目的:观察XH超高频皮肤整形仪对面部色素性皮肤病变的治疗效果。方法:选择合适的电极对7种269侧面部色素性皮肤病变进行治疗。结果:特定频段的超高频电极可使皮肤病变组织气化,治疗有效率89.6%,但对太田痣、不良文饰、色素痣等部分皮... 目的:观察XH超高频皮肤整形仪对面部色素性皮肤病变的治疗效果。方法:选择合适的电极对7种269侧面部色素性皮肤病变进行治疗。结果:特定频段的超高频电极可使皮肤病变组织气化,治疗有效率89.6%,但对太田痣、不良文饰、色素痣等部分皮肤损害达真皮深层或全层的病例效果欠佳。结论:超高频皮肤整形仪对面部色素性皮肤病变的治疗效果良好。 展开更多
关键词 XH超高频皮肤整形仪 治疗 面部色素性皮肤病变 超高频电极
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The relationship between the high-frequency performance of supercapacitors and the type of doped nitrogen in the carbon electrode
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作者 FAN Ya-feng YI Zong-lin +6 位作者 ZHOU Yi XIE Li-jing SUN Guo-hua WANG Zhen-bing Huang Xian-hong SU Fang-yuan CHEN Cheng-meng 《新型炭材料(中英文)》 SCIE EI CAS CSCD 北大核心 2024年第5期1015-1026,共12页
Nitrogen doping has been widely used to improve the performance of carbon electrodes in supercapacitors,particularly in terms of their high-frequency response.However,the charge storage and electrolyte ion response me... Nitrogen doping has been widely used to improve the performance of carbon electrodes in supercapacitors,particularly in terms of their high-frequency response.However,the charge storage and electrolyte ion response mechanisms of different nitrogen dopants at high frequencies are still unclear.In this study,melamine foam carbons with different configurations of surfacedoped N were formed by gradient carbonization,and the effects of the configurations on the high-frequency response behavior of the supercapacitors were analyzed.Using a combination of experiments and first-principle calculations,we found that pyrrolic N,characterized by a higher adsorption energy,increases the charge storage capacity of the electrode at high frequencies.On the other hand,graphitic N,with a lower adsorption energy,increases the speed of ion response.We propose the use of adsorption energy as a practical descriptor for electrode/electrolyte design in high-frequency applications,offering a more universal approach for improving the performance of N-doped carbon materials in supercapacitors. 展开更多
关键词 High-frequency supercapacitors Carbon electrodes Doped nitrogen species Adsorption energy DESCRIPTOR
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