{"id":95759,"date":"2017-08-11T06:30:18","date_gmt":"2017-08-10T22:30:18","guid":{"rendered":"\/\/m.iemloyee.com\/?p=95759"},"modified":"2017-08-10T23:03:03","modified_gmt":"2017-08-10T15:03:03","slug":"%e6%ad%a6%e6%b1%89%e7%90%86%e5%b7%a5%e5%88%98%e9%87%91%e5%b9%b3adv-mater-%ef%bc%9a%e6%96%b0%e5%9e%8bni-mn-o%e7%ba%b3%e7%b1%b3%e6%a3%b1%e6%9f%b1%e9%98%b5%e5%88%97%e7%9b%b8%e8%bd%ac","status":"publish","type":"post","link":"\/\/m.iemloyee.com\/?p=95759","title":{"rendered":"\u6b66\u6c49\u7406\u5de5\u5218\u91d1\u5e73Adv. Mater.\uff1a\u65b0\u578bNi\u2013Mn\u2013O\u7eb3\u7c73\u68f1\u67f1\u9635\u5217\u76f8\u8f6c\u53d8\u6d3b\u5316\u7528\u4e8e2.4 V\u9ad8\u7535\u538b\u6c34\u7cfb\u8d85\u7ea7\u7535\u5bb9\u5668"},"content":{"rendered":"
\u3010\u5f15\u8a00\u3011<\/strong><\/p>\n 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\u3010\u6210\u679c\u7b80\u4ecb\u3011<\/strong><\/p>\n \u8fd1\u65e5\uff0c\u6765\u81ea\u6b66\u6c49\u7406\u5de5\u5927\u5b66\u7684\u5218\u91d1\u5e73\u6559\u6388\uff08\u901a\u8baf\u4f5c\u8005\uff09\u7b49\u4eba\u5728Advanced Materials<\/strong>\u4e0a\u53d1\u6587\uff0c\u9898\u4e3a\u201cA Novel Phase-Transformation Activation Process toward Ni\u2013Mn\u2013O Nanoprism Arrays for 2.4 V Ultrahigh-Voltage Aqueous Supercapacitors<\/strong>\u201d\u3002\u7814\u7a76\u4eba\u5458\u5408\u6210\u4e86\u4e00\u79cd\u65b0\u578bNi\u2013Mn\u2013O\u56fa\u6eb6\u4f53\u6b63\u6781\u6750\u6599\u6765\u62d3\u5bbd\u6c34\u7cfb\u8d85\u7ea7\u7535\u5bb9\u5668\u7684\u7535\u538b\u7a97\u53e3\u3002\u5728\u4e00\u4e2a\u7b80\u5355\u800c\u53c8\u72ec\u7279\u7684\u76f8\u8f6c\u53d8\u7535\u5316\u5b66\u6d3b\u5316\u4e4b\u540e\uff0c\u4fbf\u83b7\u5f97\u4e86\u5728\u76f8\u5bf9\u8f83\u5bbd\u7535\u4f4d\u7a97\u53e3\uff080-1.4 V\uff0c\u76f8\u5bf9\u4e8e\u6807\u51c6\u7518\u6c5e\u7535\u6781\uff09\u7a33\u5b9a\u5de5\u4f5c\u540c\u65f6\u6291\u5236OER\u8fc7\u7a0b\u53d1\u751f\u7684\u6b63\u6781\uff0c\u5faa\u73af\u7a33\u5b9a\u6027\u6781\u4f73\uff08\uff1e5000\u5faa\u73af\uff1b95.5%\u5bb9\u91cf\u4fdd\u7559\uff09\u3002\u8fdb\u4e00\u6b65\u4e0e\u5546\u7528\u6d3b\u6027\u70ad\u8d1f\u6781\u548c\u6c34\u51dd\u80f6\u7535\u89e3\u8d28\u7ec4\u88c5\u62102.4 V\u7684\u9ad8\u7535\u538b\u6c34\u7cfb\u7535\u5bb9\u5668\uff0c\u83b7\u5f97\u6700\u5927\u4f53\u80fd\u91cf\u5bc6\u5ea6\u4e3a4.72 mWh cm-3<\/sup>\u3002<\/p>\n \u3010\u56fe\u6587\u5bfc\u8bfb\u3011<\/strong><\/p>\n \u56fe1 Ni0.25<\/sub>Mn0.75<\/sub>O@C\u7ed3\u6784\u5143\u7d20\u56fe\u8c31<\/strong><\/p>\n a) MnO, Ni25<\/sub>Mn0.75<\/sub>O\u548cNi0.25<\/sub>Mn0.75<\/sub>O@C\u7684XRD\u5168\u8c31\u548c\u90e8\u5206\u653e\u5927\u8c31\uff1b<\/p>\n b,c) Ni0.25<\/sub>Mn0.75<\/sub>O@C\u7684SEM\uff1b<\/p>\n d,e) Ni0.25<\/sub>Mn0.75<\/sub>O@C\u7684TEM\uff1b<\/p>\n f\u2013i) C, Mn, Ni\u548cO\u7684EDS\u5143\u7d20\u5206\u5e03\uff1b<\/p>\n \u56fe2 Ni-Mn-O\u7684CV\uff0cXPS, EDS, XRD\u56fe<\/strong><\/p>\n a, b)\u4e0d\u540cNi\/Mn\u539f\u5b50\u6bd4\u4f8b\u548c\u4e0d\u540c\u626b\u901f\u7684Ni-Mn-O\u56fa\u6eb6\u4f53\u7535\u6781CV\u66f2\u7ebf\uff1b<\/p>\n c) XPS\u5149\u8c31\uff1b<\/p>\n d) Ni25<\/sub>Mn0.75<\/sub>O\u7535\u6781\u7684EDS\u80fd\u8c31\uff1b<\/p>\n e) Ni25<\/sub>Mn0.75<\/sub>O\u7535\u6781CV\u6d3b\u5316\u8fc7\u7a0b\uff1b<\/p>\n f) Ni25<\/sub>Mn0.75<\/sub>O\u7535\u6781\u6d3b\u5316\u524d\u540e\u7684XRD\u56fe\u8c31\uff1b<\/p>\n \u56fe3 MnO, Ni0.25<\/sub>Mn0.75<\/sub>O,\u548cNi0.25<\/sub>Mn0.75<\/sub>O@C\u6027\u80fd\u6bd4\u8f83<\/strong><\/p>\n a)\u7eafNiO\u7535\u678110\u6b21\u5faa\u73af\u6d3b\u5316\u4e4b\u540e\u7684CV\u66f2\u7ebf\uff1b\u63d2\u56fe\u4e3aCV\u7684\u653e\u5927\u56fe\uff1b<\/p>\n b)GCD\u7279\u6027\uff1b<\/p>\n c)\u500d\u7387\u7279\u6027\uff1b<\/p>\n d) MnO, Ni25<\/sub>Mn0.75<\/sub>O,\u548cNi0.25<\/sub>Mn0.75<\/sub>O@C\u7535\u6781\u7684\u5faa\u73af\u7a33\u5b9a\u6027\uff1b<\/p>\n e) \u4e09\u7535\u6781\u7684Nyquist\u66f2\u7ebf\uff1b\u63d2\u56fe\u662f\u5728\u9ad8\u9891\u4e0b\u7684\u653e\u5927\u56fe\uff1b<\/p>\n f) Z<\/em>\u2032 -\u03c9–<\/sup>1\/2<\/sup>\u66f2\u7ebf\uff1b<\/p>\n \u56fe4 \u57280-2.4 V\u7535\u538b\u8303\u56f4\u5185Ni0.25<\/sub>Mn0.75<\/sub>O@C\/\/AC\u5728\u6c34\u6eb6\u6db2\u4e2d\u7684\u5668\u4ef6\u6027\u80fd<\/strong><\/p>\n a) CV\u66f2\u7ebf\uff1b<\/p>\n b) GCD\u56fe\uff1b<\/p>\n c) \u5728\u4e0d\u540c\u7684\u7535\u6d41\u5bc6\u5ea6\u4e0b\u7684\u5faa\u73af\u54cd\u5e94\uff1b<\/p>\n d) \u5728\u6052\u7535\u6d41\u5bc6\u5ea64 mA cm–<\/sup>2<\/sup>\u7684\u5faa\u73af\u7279\u6027\uff1b.<\/p>\n \u56fe5 2.4V Ni0.25<\/sub>Mn0.75<\/sub>O@C\u51c6\u56fa\u6001\u8d85\u7ea7\u7535\u5bb9\u5668\u5668\u4ef6<\/strong><\/p>\n a)\u5668\u4ef6\u7ed3\u6784\u793a\u610f\u56fe\uff1b.<\/p>\n b)\u5668\u4ef6\u622a\u9762SEM\u56fe\uff1b<\/p>\n c)GCD\u66f2\u7ebf.<\/p>\n d)\u5149\u5b66\u56fe\u50cf\uff1b<\/p>\n e)\u80fd\u91cf-\u529f\u7387\u5bc6\u5ea6\u6bd4\u8f83\u56fe\uff1b<\/p>\n f)\u5728\u4e0d\u540c\u7684\u7535\u6d41\u5bc6\u5ea6\u4e0b\u7684\u5faa\u73af\u54cd\u5e94\uff1b<\/p>\n g)\u572812 mA cm–<\/sup>2<\/sup>\u7684\u5faa\u73af\u7a33\u5b9a\u6027\uff1b<\/p>\n \u3010\u603b\u7ed3\u3011<\/strong><\/p>\n \u7814\u7a76\u4eba\u5458\u91c7\u7528\u6c34\u70ed\u6cd5\u548c\u9000\u706b\u5904\u7406\u5236\u5907\u5f97\u5230\u4e86Ni0.25<\/sub>Mn0.75<\/sub>O\u56fa\u6eb6\u4f53\u7eb3\u7c73\u68f1\u67f1\u9635\u5217\u7535\u6781\u3002\u8fd9\u79cd\u7535\u6781\u80fd\u591f\u6291\u5236\u4ea7\u6c27\u5e76\u4e14\u5728\u4e00\u4e2a\u7b80\u5355\u800c\u53c8\u72ec\u7279\u7684\u76f8\u8f6c\u53d8\u7535\u5316\u5b66\u6d3b\u5316\u4e4b\u540e\uff0c\u57280-1.4V\u5bbd\u7535\u4f4d\u8303\u56f4\u5185\u8fdb\u884c\u7535\u5316\u5b66\u80fd\u91cf\u5b58\u50a8\u3002\u56fa\u6eb6\u4f53\u7ed3\u6784\u5728\u7535\u5316\u5b66\u80fd\u91cf\u50a8\u5b58\u4e2d\u7684\u4f18\u52bf\u5728\u4e8e\u63d0\u9ad8\u7684\u5bb9\u91cf\/\u7a33\u5b9a\u6027\uff0c\u66f4\u5c0f\u7684\u963b\u6297\u4ee5\u53ca\u5927\u7684Li+<\/sup>\u6269\u6563\u7cfb\u6570\u3002\u56e0\u6b64\u7814\u7a76\u4eba\u5458\u5f00\u53d1\u4e86\u4e00\u79cd\u6027\u80fd\u6781\u4f73\u7684Ni0.25<\/sub>Mn0.75<\/sub>O@C\u4f5c\u4e3a\u6b63\u6781\u3001\u5546\u7528\u6d3b\u6027\u70ad\u6750\u6599\u4f5c\u4e3a\u8d1f\u6781\u76842.4 V\u8d85\u9ad8\u7535\u538b\u6c34\u7cfb\u975e\u5bf9\u79f0\u8d85\u7ea7\u7535\u5bb9\u5668\u3002\u8fdb\u4e00\u6b65\uff0c\u901a\u8fc7\u91c7\u7528PVA-LiCl\u6c34\u51dd\u80f6\u4f5c\u4e3a\u7535\u89e3\u8d28\uff0c\u83b7\u5f97\u4e862.4 V\u51c6\u56fa\u6001\u8d85\u7ea7\u7535\u5bb9\u5668\uff0c\u5faa\u73af\u5bff\u547d\u8d85\u8fc75000\u6b21\u3002\u8be5\u5de5\u4f5c\u53d1\u73b0\u7684\u6b63\u6781\u6750\u6599\u5982\u4e0e\u4e00\u4e9b\u53ef\u6291\u5236\u4ea7\u6c22\u53cd\u5e94\u7684\u5bbd\u7535\u4f4d\u7a97\u53e3\u7684\u8d1f\u6781\u8fdb\u884c\u642d\u914d\uff0c\u6709\u671b\u5b9e\u73b0\u66f4\u9ad8\u7684\u6c34\u7cfb\u8d85\u7ea7\u7535\u5bb9\u5668\u5668\u4ef6\u3002<\/p>\n \u6587\u732e\u94fe\u63a5\uff1a<\/strong>A Novel Phase-Transformation Activation Process toward Ni\u2013Mn\u2013O Nanoprism Arrays for 2.4 V Ultrahigh-Voltage Aqueous Supercapacitors<\/a> (Advanced Materials, 2017, DOI: 10.1002\/adma.201703463)<\/p>\n \u3010\u901a\u8baf\u4f5c\u8005\u7b80\u4ecb\u3011<\/strong><\/p>\n \u5218\u91d1\u5e73\uff0c\u6b66\u6c49\u7406\u5de5\u5927\u5b66\u7279\u8058\u6559\u6388\u3001\u9752\u5e74\u62d4\u5c16\u4eba\u624d\u3002\u83b7\u6e56\u5317\u7701\u6770\u51fa\u9752\u5e74\u4eba\u624d\u57fa\u91d1\u8d44\u52a9\uff082013\uff09\uff0c\u5165\u9009SCOPUS\u9752\u5e74\u79d1\u5b66\u5bb6\u4e4b\u661f\uff082010\uff09\uff0cElsevier\u201c\u4e2d\u56fd\u9ad8\u88ab\u5f15\u5b66\u8005\u201d\uff082014\u30012015\u30012016\uff09\u3002\u957f\u671f\u4ece\u4e8b\u7eb3\u7c73\u50a8\u80fd\u6750\u6599\u4e0e\u5668\u4ef6\u7684\u7814\u7a76\uff0c\u8fc4\u4eca\u5728Adv. Mater.\u7cfb\u5217\uff0cNano Lett., Energy & Environ. Sci.\u7b49\u671f\u520a\u4e0a\u53d1\u8868SCI\u8bba\u658790\u4f59\u7bc7\uff0c\u88abNature Energy\u7b49SCI\u4ed6\u5f158000\u4f59\u6b21\uff0c\u5355\u7bc7SCI\u5f15\u7528\u6700\u9ad8~1100\u6b21\uff0c\u5355\u7bc7\u5f15\u7528\u8d85\u8fc7200\u6b21\u768410\u7bc7\uff0cH\u6307\u657049\u300217\u7bc7\u8bba\u6587\u88ab\u8bc4\u4e3a\u5168\u7403ESI\u9ad8\u88ab\u5f15\uff081%\uff09\u6216\u70ed\u70b9\uff080.1%\uff09\u8bba\u6587\u3002\u53d7\u9080\u64b0\u5199\u82f1\u6587\u4e13\u84571 \u7ae0\uff1b\u7533\u8bf7\u548c\u6388\u6743\u7f8e\u56fd\u4e13\u52291 \u9879\u3001\u4e2d\u56fd\u53d1\u660e\u4e13\u52299\u9879\u3002\u627f\u62c5\u79d1\u6280\u90e8\u91cd\u70b9\u7814\u53d1\u8ba1\u5212\u7eb3\u7c73\u79d1\u6280\u91cd\u70b9\u4e13\u9879\u3001\u56fd\u5bb6\u81ea\u7136\u79d1\u5b66\u57fa\u91d1\u9762\u4e0a\u9879\u76ee\u7b49\u9879\u76ee\u8fd110\u9879\u3002\u73b0\u4efbScientific Reports\u548cNanotechnology\u6742\u5fd7\u7f16\u59d4\u3001\u4e2d\u56fd\u529f\u80fd\u6750\u6599\u5b66\u4f1a\u7406\u4e8b\u3001\u4e2d\u56fd\u9897\u7c92\u5b66\u4f1a\u9752\u5e74\u7406\u4e8b\u3002<\/p>\n \u8fd1\u4e09\u5e74\u56f4\u7ed5\u7eb3\u7c73\u9635\u5217\u7814\u7a76\u5e73\u53f0\uff0c\u53d1\u5c55\u4e86\u51e0\u7c7b\u65b0\u578b\u9ad8\u7535\u538b\u3001\u9ad8\u80fd\u91cf\u5bc6\u5ea6\u67d4\u6027\u50a8\u80fd\u5668\u4ef6\u4f53\u7cfb\uff08Advanced Materials, 2017, DOI: 10.1002\/adma.201703463\uff1bAdvanced Functional Materials, 2015, 25, 5384-5394\uff1bScientific Reports, 2015, 5, 7780\uff09\uff0c\u5e76\u53d7\u9080\u64b0\u5199\u4e86\u7efc\u8ff0\uff08Advanced Science, 2017, 4, 1600539\uff09\uff1b\u63d0\u51fa\u4e86\u4e00\u7c7b\u6c34\u7cfb\u8f6c\u6362\u53cd\u5e94\u65b0\u7535\u6781\u548c\u65b0\u673a\u7406\uff0c\u53ef\u7528\u4e8e\u6c34\u7cfb\u591a\u4ef7\u91d1\u5c5e\u79bb\u5b50\u7535\u6c60\uff08Li+<\/sup>\uff0cNa+<\/sup>, K+<\/sup>\u7b49\uff1bEnergy & Environmental Science, 2016, 9, 2881-2891\uff09\uff1b\u63d0\u51fa\u4e863D\u7eb3\u7c73\u9635\u5217\u96c6\u6d41\u4f53\u6291\u5236\u6c34\u7cfb\u950c\u7535\u6c60\u7684\u950c\u679d\u6676\u95ee\u9898\uff08Advanced Materials, 2016, 28, 8732-8739\uff09\uff1b\u63d0\u51fa\u3001\u7406\u89e3\u548c\u7814\u7a76\u4e86\u201c\u4f4e\u7535\u4f4d\u9884\u751f\u957fSEI\u819c\u6291\u5236\u786b\u7535\u6781\u7a7f\u68ad\u6548\u5e94\u201d\u7684\u673a\u7406\uff08Advanced Materials, 2017, 29, 1700273\uff09\u3002<\/p>\n \u76f8\u5173\u6587\u7ae0\uff1a<\/strong><\/p>\n (1) A Novel Phase-Transformation Activation Process towards Ni-Mn-O Nanoprism Arrays for 2.4 V Ultrahigh-Voltage Aqueous Supercapacitors, Advanced Materials<\/em><\/strong>, 2017, DOI: 10.1002\/adma.201703463.<\/p>\n (2) Facile Formation of a Solid Electrolyte Interface as a Smart Blocking Layer for High-Stability Sulfur Cathode, Advanced Materials<\/em><\/strong>, 2017, 29, 1700273.<\/p>\n (3) Battery-Supercapacitor Hybrid Devices: Recent Progress and Future Prospects, Advanced Science<\/em><\/strong>, 2017, 4, 1600539.<\/p>\n (4) Bismuth Oxide: A Versatile High-Capacity Electrode Material for Rechargeable Aqueous Metal-Ion Batteries, Energy & Environmental Science<\/em><\/strong>, 2016, 9, 2881-2891.<\/p>\n (5) A Flexible Quasi-Solid-State Nickel\u2013Zinc Battery with High Energy and Power Densities Based on 3D Electrode Design, Advanced Materials<\/em><\/strong>, 2016, 28, 8732-8739.<\/p>\n (6) Carbon-Stabilized High-Capacity Ferroferric Oxide Nanorod Array for Flexible Solid-State Alkaline Battery-Supercapacitor Hybrid Device with High Environmental Suitability, Advanced Functional Materials<\/em><\/strong>, 2015, 25, 5384-5394.<\/p>\n (7) Fabrication and Shell Optimization of Synergistic TiO2-MoO3 Core-Shell Nanowire Array Anode for High Energy and Power Density Lithium-Ion Batteries, Advanced Functional Materials<\/em><\/strong>, 2015, 25, 3524\u20133533.<\/p>\n (8) Directly Grown Nanostructured Electrodes for High Volumetric Energy Density Binder-Free Hybrid Supercapacitors: A Case Study of CNTs\/\/Li4Ti5O12, Scientific Reports<\/em><\/strong>, 2015, 5, 7780.<\/p>\n \u672c\u6587\u7531\u6750\u6599\u4eba\u65b0\u80fd\u6e90\u5b66\u672f\u7ec4Z. Chen\u4f9b\u7a3f\uff0c\u6750\u6599\u725b\u6574\u7406\u7f16\u8f91\u3002<\/p>\n \u6750\u6599\u725b\u7f51\u4e13\u6ce8\u4e8e\u8ddf\u8e2a\u6750\u6599\u9886\u57df\u79d1\u6280\u53ca\u884c\u4e1a\u8fdb\u5c55\uff0c\u8fd9\u91cc\u6c47\u96c6\u4e86\u5404\u5927\u9ad8\u6821\u7855\u535a\u751f\u3001\u4e00\u7ebf\u79d1\u7814\u4eba\u5458\u4ee5\u53ca\u884c\u4e1a\u4ece\u4e1a\u8005\uff0c\u5982\u679c\u60a8\u5bf9\u4e8e\u8ddf\u8e2a\u6750\u6599\u9886\u57df\u79d1\u6280\u8fdb\u5c55\uff0c\u89e3\u8bfb\u9ad8\u6c34\u5e73\u6587\u7ae0\u6216\u662f\u8bc4\u8ff0\u884c\u4e1a\u6709\u5174\u8da3\uff0c\u70b9\u6211\u52a0\u5165\u7f16\u8f91\u90e8<\/a>\u3002<\/p>\n
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