{"id":49281,"date":"2016-11-04T06:30:08","date_gmt":"2016-11-03T22:30:08","guid":{"rendered":"\/\/m.iemloyee.com\/?p=49281"},"modified":"2017-02-06T12:22:18","modified_gmt":"2017-02-06T04:22:18","slug":"%e6%9d%90%e6%96%99%e4%ba%ba%e8%8d%90%e8%af%bb%e4%b8%a8%e9%94%82%e7%a9%ba%e7%94%b5%e6%b1%a0%e5%a4%a7%e7%89%9b%e7%9b%98%e7%82%b9%e5%8f%8aesi%e9%ab%98%e8%a2%ab%e5%bc%95%e7%bb%8f%e5%85%b8%e7%bb%bc","status":"publish","type":"post","link":"\/\/m.iemloyee.com\/?p=49281","title":{"rendered":"\u6750\u6599\u4eba\u8350\u8bfb\u4e28\u9502\u7a7a\u7535\u6c60\u5927\u725b\u76d8\u70b9\u53caESI\u9ad8\u88ab\u5f15\u7ecf\u5178\u7efc\u8ff0\u8350\u8bfb"},"content":{"rendered":"

\"likong\u539f\u7406\"<\/p>\n

\u9502\u7a7a\u6c14\u7535\u6c60\u539f\u7406<\/p>\n

\u5728\u4e0a\u7bc7\u6587\u7ae0\u6750\u6599\u4eba\u62a5\u544a\uff5c\u4e00\u6587\u8bfb\u61c2\u9502\u7a7a\u6c14\u7535\u6c60\u9886\u57df\u5b66\u672f\u6d41\u6d3e\u3001\u5b9e\u529b\u5206\u5e03<\/a><\/span><\/span>\u4e2d\uff0c\u6211\u4eec\u7b80\u5355\u6316\u6398\u4e86\u5173\u4e8e\u9502\u7a7a\u6c14\u7535\u6c60\u7684SCI\u53d1\u6587\u4fe1\u606f\uff0c\u8fd9\u7bc7\u8350\u8bfb\u6587\u7ae0\u4e2d\uff0c\u4e00\u8d77\u6765\u76d8\u70b9\u4e0b\u9502\u7a7a\u6c14\u7535\u6c60\u9886\u57df\u6709\u54ea\u4e9b\u5927\u725b\u3002\u672c\u6587\u4e2d\u6309\u4f5c\u8005\u4ee5\u901a\u8baf\u4f5c\u8005\u8eab\u4efd\u5728\u6b64\u9886\u57df\u5185\u5165\u9009ESI\u9ad8\u88ab\u5f15\u7684\u6587\u7ae0\u88ab\u5f15\u9891\u6b21\u4e4b\u548c\u6392\u540d\uff0c\u5217\u4e3e\u51fa10\u540d\u9886\u57df\u5185\u5b66\u8005\u3002<\/p>\n

NO.1<\/strong> \u00a0\u5723\u5b89\u5fb7\u9c81\u65af\u5927\u5b66<\/span> \u00a0Bruce, Peter G.<\/span><\/p>\n

\u4e0a\u699c\u7406\u7531\uff1a\u5f15\u53d1\u9502\u7a7a\u7535\u6c60\u7814\u7a76\u70ed\u6f6e\uff0cESI\u9ad8\u88ab\u5f15\u4f5c\u54c112\u7bc7\uff0c\u5176\u4e2d\u4ee5\u901a\u8baf\u4f5c\u8005\u8eab\u4efd\u53d1\u886811\u7bc7\uff0c\u603b\u88ab\u5f15\u9891\u6b215642<\/span>\uff08\u53ea\u8ba1\u7b97\u4ee5\u901a\u8baf\u4f5c\u8005\u8eab\u4efd\u5165\u9009ESI\u7684\u6587\u7ae0\uff0c\u4e0b\u6587\u540c\u4e0a\uff09<\/span><\/p>\n

\u4e0a\u699c\u4f5c\u54c1\uff1a<\/p>\n

[1] Li-O-2 and Li-S batteries with high energy storage\u00a0, DOI: 10.1038\/nmat3191\uff0c\u88ab\u5f15\u9891\u6b21\uff1a2032<\/p>\n

[2] A Reversible and Higher-Rate Li-O-2 Battery\uff0cDOI: 10.1126\/science.1223985\uff0c\u88ab\u5f15\u9891\u6b21\uff1a646<\/p>\n

[3] Rechargeable Li2O2 electrode for lithium batteries, DOI: 10.1021\/ja056811q\uff0c\u88ab\u5f15\u9891\u6b21\uff1a625<\/p>\n

[4] Reactions in the Rechargeable Lithium-O2 Battery with Alkyl Carbonate Electrolytes\uff0cDOI:\u00a010.1021\/ja2021747\uff0c\u88ab\u5f15\u9891\u6b21\uff1a602<\/p>\n

[5] The\u00a0Lithium-Oxygen\u00a0Battery with Ether-Based Electrolytes\uff0cDOI:\u00a010.1002\/anie.201102357\uff0c\u88ab\u5f15\u9891\u6b21\uff1a459<\/p>\n

[6] An O2 cathode for rechargeable lithium\u00a0batteries: The effect of a catalyst\uff0cDOI:\u00a010.1016\/j.jpowsour.2007.06.180\uff0c\u88ab\u5f15\u9891\u6b21\uff1a378<\/p>\n

[7] The Carbon Electrode in Nonaqueous\u00a0Li-O2\u00a0Cells\uff0cDOI:\u00a010.1021\/ja310258x\uff0c\u88ab\u5f15\u9891\u6b21\uff1a306<\/p>\n

[8] Charging a\u00a0Li-O2\u00a0battery using a redox mediator\uff0cDOI:\u00a010.1038\/NCHEM.1646\uff0c\u88ab\u5f15\u9891\u6b21\uff1a180<\/p>\n

[9] Li-O2\u00a0Battery with a Dimethylformamide Electrolyte\uff0cDOI:\u00a010.1021\/ja302178w\uff0c\u88ab\u5f15\u9891\u6b21\uff1a159<\/p>\n

[10] Lithium-air\u00a0and lithium-sulfur\u00a0batteries\uff0cDOI:\u00a010.1557\/mrs.2011.157\uff0c\u88ab\u5f15\u9891\u6b21\uff1a140<\/p>\n

[11] The role of LiO2 solubility in O2 reduction in aprotic solvents and its consequences for\u00a0Li-O2\u00a0batteries\uff0cDOI:\u00a010.1038\/NCHEM.2101\uff0c\u88ab\u5f15\u9891\u6b21\uff1a115<\/p>\n

NO.2<\/strong> \u00a0IBM \u00a0McCloskey, B. D<\/span><\/p>\n

\u4e0a\u699c\u7406\u7531\uff1aESI\u9ad8\u88ab\u5f15\u4f5c\u54c110\u7bc7\uff0c\u5176\u4e2d\u4ee5\u901a\u8baf\u4f5c\u8005\u8eab\u4efd\u53d1\u88683\u7bc7\uff0c\u603b\u88ab\u5f15\u9891\u6b211052<\/span><\/p>\n

\u4e0a\u699c\u4f5c\u54c1\uff1a<\/p>\n

[1] Solvents’ Critical Role in Nonaqueous\u00a0Lithium-Oxygen\u00a0Battery Electrochemistry\uff0cDOI:\u00a010.1021\/jz200352v\uff0c\u88ab\u5f15\u9891\u6b21\uff1a501<\/p>\n

[2] On the Efficacy of Electrocatalysis in Nonaqueous\u00a0Li-O-2\u00a0Batteries\uff0cDOI:\u00a010.1021\/ja207229n\uff0c\u88ab\u5f15\u9891\u6b21\uff1a287<\/p>\n

[3] Limitations in Rechargeability of\u00a0Li-O-2\u00a0Batteries\u00a0and Possible Origins\uff0cDOI:\u00a010.1021\/jz301359t\uff0c\u88ab\u5f15\u9891\u6b21\uff1a160<\/p>\n

[4] Combining Accurate O-2 and Li2O2 Assays to Separate Discharge and Charge Stability Limitations in Nonaqueous\u00a0Li-O-2\u00a0Batteries\uff0cDOI:\u00a010.1021\/jz401659f\uff0c\u88ab\u5f15\u9891\u6b21\uff1a104<\/p>\n

NO.3\u00a0<\/strong>\u4e2d\u79d1\u9662\u957f\u6625\u5e94\u7528\u5316\u5b66\u7814\u7a76\u6240 \u00a0\u5f20\u65b0\u6ce2<\/span><\/p>\n

\u4e0a\u699c\u7406\u7531\uff1aESI\u9ad8\u88ab\u5f15\u4f5c\u54c16\u7bc7\uff0c\u5176\u4e2d\u4ee5\u901a\u8baf\u4f5c\u8005\u8eab\u4efd\u53d1\u88685\u7bc7\uff0c\u603b\u88ab\u5f15\u9891\u6b21946<\/span><\/p>\n

\u4e0a\u699c\u4f5c\u54c1\uff1a<\/p>\n

[1] Graphene Oxide Gel-Derived, Free-Standing, Hierarchically Porous Carbon for High-Capacity and High-Rate Rechargeable Li-O2\u00a0Batteries\uff0cDOI:\u00a010.1002\/adfm.201200403\uff0c\u88ab\u5f15\u9891\u6b21\uff1a208<\/p>\n

[2] Synthesis of Perovskite-Based Porous La0.75Sr0.25MnO3 Nanotubes as a Highly Efficient Electrocatalyst for Rechargeable LithiumOxygenBatteries\uff0cDOI:\u00a010.1002\/anie.201210057\uff0c\u88ab\u5f15\u9891\u6b21\uff1a205<\/p>\n

[3] Tailoring deposition and morphology of discharge products towards high-rate and long-life\u00a0lithium-oxygen\u00a0batteries\uff0cDOI:\u00a010.1038\/ncomms3438\uff0c\u88ab\u5f15\u9891\u6b21\uff1a199<\/p>\n

[4] Oxygen electrocatalysts in metal-air\u00a0batteries: from aqueous to nonaqueous electrolytes, DOI:\u00a010.1039\/c3cs60248f\uff0c\u88ab\u5f15\u9891\u6b21\uff1a187<\/p>\n

[5] Novel DMSO-based electrolyte for high performance rechargeable\u00a0Li-O-2\u00a0batteries\uff0cDOI:\u00a010.1039\/c2cc32844e\uff0c\u88ab\u5f15\u9891\u6b21\uff1a147<\/p>\n

NO.4<\/strong> \u00a0\u7f8e\u56fd\u897f\u5317\u592a\u5e73\u6d0b\u56fd\u5bb6\u5b9e\u9a8c\u5ba4 Xiao, Jie<\/span><\/p>\n

\u4e0a\u699c\u7406\u7531\uff1aESI\u9ad8\u88ab\u5f15\u4f5c\u54c111\u7bc7\uff0c\u5176\u4e2d\u4ee5\u901a\u8baf\u4f5c\u8005\u8eab\u4efd\u53d1\u88684\u7bc7\uff0c\u603b\u88ab\u5f15\u9891\u6b21791<\/span><\/p>\n

\u4e0a\u699c\u4f5c\u54c1\uff1a<\/p>\n

[1] Hierarchically Porous Graphene as a\u00a0Lithium-Air\u00a0Battery Electrode\uff0cDOI:\u00a010.1021\/nl203332e\uff0c\u88ab\u5f15\u9891\u6b21\uff1a428<\/p>\n

[2] Optimization of Air Electrode for\u00a0Li\/Air\u00a0Batteries\uff0cDOI:\u00a010.1149\/1.3314375\uff0c\u88ab\u5f15\u9891\u6b21\uff1a202<\/p>\n

[3] Investigation of the rechargeability of\u00a0Li-O-2\u00a0batteries\u00a0in non-aqueous electrolyte\uff0cDOI:\u00a010.1016\/j.jpowsour.2011.02.060\uff0c\u88ab\u5f15\u9891\u6b21\uff1a141<\/p>\n

[4] Failure Mechanism for Fast-Charged Lithium Metal\u00a0Batteries\u00a0with Liquid Electrolytes\uff0cDOI:\u00a010.1002\/aenm.201400993\uff0c\u88ab\u5f15\u9891\u6b21\uff1a20<\/p>\n

NO.5<\/strong>\u00a0 IBM\u3001SLAC\u56fd\u5bb6\u52a0\u901f\u5668\u5b9e\u9a8c\u5ba4\u00a0Luntz, A. C.<\/span><\/p>\n

\u4e0a\u699c\u7406\u7531\uff1aESI\u9ad8\u88ab\u5f15\u4f5c\u54c113\u7bc7\uff0c\u5176\u4e2d\u4ee5\u901a\u8baf\u4f5c\u8005\u8eab\u4efd\u53d1\u88684\u7bc7\uff0c\u603b\u88ab\u5f15\u9891\u6b21\uff1a880<\/span><\/p>\n

\u4e0a\u699c\u4f5c\u54c1\uff1a<\/p>\n

[1] Twin Problems of Interfacial Carbonate Formation in Nonaqueous\u00a0Li-O2<\/sub>\u00a0Batteries<\/span>\uff0cDOI:\u00a010.1021\/jz300243r<\/span>\uff0c\u88ab\u5f15\u9891\u6b21\uff1a405<\/span><\/p>\n

[2] Electrical conductivity in Li2<\/sub>O2<\/sub> and its role in determining capacity limitations in non-aqueous\u00a0Li-O2<\/sub>\u00a0batteries<\/span>\uff0cDOI:\u00a010.1063\/1.3663385<\/span>\uff0c\u88ab\u5f15\u9891\u6b21\uff1a198<\/span><\/p>\n

[3] Nonaqueous\u00a0Li-Air\u00a0Batteries: A Status Report<\/span>\uff0cDOI:\u00a010.1021\/cr500054y<\/span>\uff0c\u88ab\u5f15\u9891\u6b21\uff1a151<\/span><\/p>\n

[4] On the Mechanism of Nonaqueous\u00a0Li-O2<\/sub>\u00a0Electrochemistry on C and Its Kinetic Overpotentials: Some Implications for\u00a0Li-AirBatteries<\/span>\uff0cDOI:\u00a010.1021\/jp306680f<\/span>\uff0c\u88ab\u5f15\u9891\u6b21\uff1a129<\/span><\/p>\n

NO.6\u00a0<\/span><\/strong>\u9ebb\u7701\u7406\u5de5\u5b66\u9662 Shao-Horn, Yang<\/span><\/p>\n

\u4e0a\u699c\u7406\u7531\uff1aESI\u9ad8\u88ab\u5f15\u4f5c\u54c114\u7bc7\uff0c\u5176\u4e2d\u4ee5\u901a\u8baf\u4f5c\u8005\u8eab\u4efd\u53d1\u88682\u7bc7\uff0c\u603b\u88ab\u5f15\u9891\u6b21\uff1a775<\/span><\/p>\n

\u4e0a\u699c\u4f5c\u54c1<\/p>\n

[1] Platinum-Gold Nanoparticles: A Highly Active Bifunctional Electrocatalyst for RechargeableLithium-Air\u00a0Batteries\uff0cDOI:\u00a010.1021\/ja1036572\uff0c\u88ab\u5f15\u9891\u6b21\uff1a577<\/p>\n

[2] Chemical and Morphological Changes of\u00a0Li-O-2\u00a0Battery Electrodes upon Cycling\uff0cDOI:\u00a010.1021\/jp308093b\uff0c\u88ab\u5f15\u9891\u6b21\uff1a198<\/p>\n

NO.7<\/strong> \u00a0 \u6ed1\u94c1\u5362\u5927\u5b66 \u00a0Nazar, Linda F.<\/span><\/p>\n

\u4e0a\u699c\u7406\u7531\uff1aESI\u9ad8\u88ab\u5f15\u4f5c\u54c110\u7bc7\uff0c\u5176\u4e2d\u4ee5\u901a\u8baf\u4f5c\u8005\u8eab\u4efd\u53d1\u88684\u7bc7\uff0c\u603b\u88ab\u5f15\u9891\u6b21761<\/span><\/p>\n

\u4e0a\u699c\u4f5c\u54c1\uff1a<\/p>\n

[1] Screening for Superoxide Reactivity in\u00a0Li-O-2\u00a0Batteries: Effect on Li2O2\/LiOH Crystallization\uff0cDOI:\u00a010.1021\/ja2111543\uff0c\u88ab\u5f15\u9891\u6b21\uff1a320<\/p>\n

[2] Synthesis of a metallic mesoporous pyrochlore as a catalyst for lithium-O-2\u00a0batteries\uff0cDOI:\u00a010.1038\/NCHEM.1499\uff0c\u88ab\u5f15\u9891\u6b21\uff1a228<\/p>\n

[3] Non-Aqueous and Hybrid Li-O2\u00a0Batteries\uff0cDOI:\u00a010.1002\/aenm.201200001\uff0c\u88ab\u5f15\u9891\u6b21\uff1a177<\/p>\n

[4] Towards a Stable Organic Electrolyte for the\u00a0Lithium Oxygen\u00a0Battery\uff0cDOI:\u00a010.1002\/aenm.201400867\uff0c\u88ab\u5f15\u9891\u6b21\uff1a36<\/p>\n

NO.8<\/strong> \u7f8e\u56fd\u897f\u5317\u592a\u5e73\u6d0b\u56fd\u5bb6\u5b9e\u9a8c\u5ba4 Xu, Wu\u00a0 <\/span><\/p>\n

\u4e0a\u699c\u7406\u7531\uff1aESI\u9ad8\u88ab\u5f15\u4f5c\u54c110\u7bc7\uff0c\u5176\u4e2d\u4ee5\u901a\u8baf\u4f5c\u8005\u8eab\u4efd\u53d1\u88685\u7bc7\uff0c\u603b\u88ab\u5f15\u9891\u6b21660<\/span><\/p>\n

\u4e0a\u699c\u4f5c\u54c1\uff1a<\/p>\n

[1] Lithium metal anodes for rechargeable\u00a0batteries\uff0cDOI:\u00a010.1039\/c3ee40795k\uff0c\u88ab\u5f15\u9891\u6b21\uff1a202<\/p>\n

[2] Investigation on the charging process of Li(2)O(2)-based air electrodes in\u00a0Li-O(2)\u00a0batteries\u00a0with organic carbonate electrolytes\uff0cDOI:\u00a010.1016\/j.jpowsour.2010.12.065\uff0c\u88ab\u5f15\u9891\u6b21159<\/p>\n

[3] Reaction mechanisms for the limited reversibility of\u00a0Li-O-2 chemistry in organic carbonate electrolytes\uff0cDOI:\u00a010.1016\/j.jpowsour.2011.06.099\uff0c\u88ab\u5f15\u9891\u6b21\uff1a122<\/p>\n

[4] The stability of organic solvents and carbon electrode in nonaqueous\u00a0Li-O-2\u00a0batteries\uff0cDOI:\u00a010.1016\/j.jpowsour.2012.05.021\uff0c\u88ab\u5f15\u9891\u6b21\uff1a101<\/p>\n

[5] Effects of Electrolyte Salts on the Performance of\u00a0Li-O-2Batteries\uff0cDOI:\u00a010.1021\/jp311114u\uff0c\u88ab\u5f15\u9891\u6b21\uff1a76<\/p>\n

NO.9<\/strong> \u00a0\u6c49\u9633\u5927\u5b66 Sun, Yang-Kook \u00a0<\/span><\/p>\n

\u4e0a\u699c\u7406\u7531\uff1aESI\u9ad8\u88ab\u5f15\u4f5c\u54c111\u7bc7\uff0c\u5176\u4e2d\u4ee5\u901a\u8baf\u4f5c\u8005\u8eab\u4efd\u53d1\u88684\u7bc7\uff0c\u603b\u88ab\u5f15\u9891\u6b21509<\/span><\/p>\n

\u4e0a\u699c\u4f5c\u54c1\uff1a<\/p>\n

[1] Aprotic and Aqueous\u00a0Li-O-2\u00a0Batteries\uff0cDOI:\u00a010.1021\/cr400573b\uff0c\u88ab\u5f15\u9891\u6b21\uff1a170<\/p>\n

[2] A nanostructured cathode architecture for low charge overpotential in\u00a0lithium-oxygen\u00a0batteries\uff0cDOI:\u00a010.1038\/ncomms3383\uff0c\u88ab\u5f15\u9891\u6b21\uff1a156<\/p>\n

[3] Ruthenium-Based Electrocatalysts Supported on Reduced Graphene Oxide for\u00a0Lithium-AirBatteries\uff0cDOI:\u00a010.1021\/nn400477d\uff0c\u88ab\u5f15\u9891\u6b21\uff1a155<\/p>\n

[4] Understanding the behavior of Li-oxygen cells containing Li\uff0cDOI:\u00a010.1039\/c5ta01399b\uff0c\u88ab\u5f15\u9891\u6b21\uff1a28<\/p>\n

NO.10<\/strong> \u00a0\u7f8e\u56fd\u897f\u5317\u592a\u5e73\u6d0b\u56fd\u5bb6\u5b9e\u9a8c\u5ba4 Zhang, Ji-Guang<\/p>\n

\u4e0a\u699c\u7406\u7531\uff1aESI\u9ad8\u88ab\u5f15\u4f5c\u54c113\u7bc7\uff0c\u5176\u4e2d\u4ee5\u901a\u8baf\u4f5c\u8005\u8eab\u4efd\u53d1\u88682\u7bc7\uff0c\u603b\u88ab\u5f15\u9891\u6b21328<\/span><\/p>\n

\u4e0a\u699c\u4f5c\u54c1\uff1a<\/p>\n

[1] Electrocatalysts for Nonaqueous\u00a0Lithium-Air\u00a0Batteries: Status, Challenges, and Perspective\uff0cDOI:\u00a010.1021\/cs300036v\uff0c\u88ab\u5f15\u9891\u6b21\uff1a226<\/p>\n

[2] Ambient operation of\u00a0Li\/Air\u00a0batteries\uff0cDOI:\u00a010.1016\/j.jpowsour.2010.01.022\uff0c\u88ab\u5f15\u9891\u6b21\uff1a102<\/p>\n

\u7531\u4e8e\u5c0f\u7f16\u6c34\u5e73\u6709\u9650\uff0c\u800c\u4e14\u6570\u636e\u7edf\u8ba1\u8f83\u4e3a\u7e41\u7410\uff0c\u4ee5\u4e0a\u6392\u540d\u548c\u6570\u636e\u96be\u514d\u51fa\u9519\uff0c\u6073\u8bf7\u8bfb\u8005\u6279\u8bc4\u6307\u6b63\u3002<\/p>\n

\u4e0b\u9762\uff0c\u5c0f\u7f16\u4e3a\u5927\u5bb6\u4ecb\u7ecd10\u7bc7\u9502\u7a7a\u6c14\u7535\u6c60\u9886\u57df\u5165\u9009ESI\u9ad8\u88ab\u5f15\u7684\u7ecf\u5178\u7efc\u8ff0<\/span><\/strong><\/p>\n

1\u3001Li-O-2 and Li-S batteries with high energy storage[1]<\/strong><\/p>\n

\"\u7b2c\u4e00\u7bc7\u725b\u6587\"<\/p>\n

\u00a0\u4e0d\u540c\u53ef\u5145\u7535\u7535\u6c60\u7684\u5b9e\u9645\u6bd4\u80fd\u91cf\u4ee5\u53ca\u9884\u6d4b\u884c\u9a76\u91cc\u7a0b\u548c\u6210\u672c\u4ef7<\/p>\n

\u9488\u5bf9\u9502\u79bb\u5b50\u7535\u6c60\u7684\u4e0d\u8db3\uff0c\u4ee5\u7535\u52a8\u6c7d\u8f66\u4f9b\u80fd\u5e94\u7528\u4e3a\u7740\u773c\u70b9\uff0c\u8be5\u6587\u8be6\u5c3d\u5730\u4ecb\u7ecd\u4e86\u4e24\u79cd\u66f4\u5177\u524d\u666f\u7684\u9502\u7535\u6c60\uff0c\u5373\u9502\u786b\u7535\u6c60\u548c\u9502\u7a7a\u6c14\u7535\u6c60\uff0c\u5b83\u4eec\u5404\u6709\u4f18\u52a3\uff0c\u4f46\u76f8\u6bd4\u800c\u8a00\uff0c\u9502\u7a7a\u6c14\u7535\u6c60\u66f4\u5177\u53d1\u5c55\u6f5c\u529b\u3002<\/p>\n

2\u3001Electrical Energy Storage for the Grid: A\u00a0Battery\u00a0of Choices[2]<\/strong><\/p>\n

\"2\"<\/p>\n

\u4e0d\u540c\u7535\u6c60\u653e\u7535\u65f6\u95f4\u548c\u989d\u5b9a\u529f\u7387\u7684\u5dee\u5f02<\/p>\n

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3\u3001Lithium-Air Battery: Promise and Challenges[3]<\/strong><\/p>\n

\"3wen\"<\/p>\n

\u9502\u7a7a\u6c14\u7535\u6c60\u539f\u7406\u56fe<\/p>\n

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4\u3001A Critical Review of Li\/Air Batteries[4]<\/strong><\/p>\n

\"1\"<\/p>\n

\u4ee5\u6ce1\u6cabNi\u4e3a\u57fa\u7684\u9502\u7a7a\u6c14\u7535\u6c60\u6c14\u4f53\u6269\u6563\u9634\u6781<\/p>\n

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5\u3001Lithium\u2013oxygen batteries: bridging mechanistic\u00a0understanding and battery performance[5]<\/strong><\/p>\n

\"2\"<\/p>\n

\u9502\u7a7a\u6c14\u7535\u6c60\u7684\u5c40\u9650\u6027<\/p>\n

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6\u3001Graphene and Graphene-Based Materials for Energy\u00a0Storage Applications[6]<\/strong><\/p>\n

\"3\"<\/p>\n

\u77f3\u58a8\u70ef\u7a7a\u6c14\u7535\u6781\u7684\u5f62\u6001<\/p>\n

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7\u3001Nanostructured electrodes for lithium-ion and lithium-air batteries:\u00a0the latest developments, challenges, and perspectives[7]<\/strong><\/p>\n

\"4\"<\/p>\n

\u4e0d\u540c\u7535\u89e3\u8d28\u60c5\u51b5\u4e0b\u7684\u56db\u79cd\u9502\u7a7a\u6c14\u7535\u6c60\u7ed3\u6784<\/p>\n

\u6587\u7ae0\u4e3b\u8981\u4ecb\u7ecd\u4e86\u7eb3\u7c73\u7535\u6781\u5728\u9502\u79bb\u5b50\u7535\u6c60\u548c\u9502\u7a7a\u6c14\u7535\u6c60\u4e2d\u7684\u5e94\u7528\uff0c\u5305\u62ec\u5b83\u4eec\u7684\u524d\u6cbf\u8fdb\u5c55\u3001\u9762\u4e34\u7684\u6311\u6218\u548c\u672a\u6765\u53d1\u5c55\u8d8b\u52bf\u3002<\/p>\n

8.Nanostructured electrodes for lithium-ion and lithium-air batteries:\u00a0the latest developments, challenges, and perspectives[8]<\/strong><\/p>\n

\"8\"<\/p>\n

\u4e00\u79cd\u9502\u7a7a\u6c14\u7535\u6c60\uff0c\u5305\u62ec\u66b4\u9732\u5728\u6c27\u6c14\u4e2d\u7684\u9502\u79bb\u5b50\u6b63\u6781\u6750\u6599\u548c\u591a\u5b54\u8d1f\u6781<\/p>\n

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9. Challenges and opportunities of nanostructured materials for aprotic rechargeable lithium\u2013air batteries[9]<\/strong><\/p>\n

\"9\"<\/p>\n

\u8d28\u5b50\u9502\u7a7a\u6c14\u7535\u6c60\u539f\u7406\u56fe<\/p>\n

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10. Review on mechanisms and continuum models of multi-phase\u00a0transport phenomena in porous structures of non-aqueous Li-Air\u00a0batteries[10]<\/strong><\/p>\n

\"10\"<\/p>\n

IBM\u516c\u53f8\u7814\u53d1\u7684\u5438\u6c14\u9502\u7a7a\u6c14\u7535\u6c60<\/p>\n

\u6587\u7ae0\u4ecb\u7ecd\u4e86\u4e00\u79cd\u65b0\u578b\u9502\u7a7a\u6c14\u7535\u6c60\uff0c\u5373\u5438\u6c14\u9502\u7a7a\u6c14\u7535\u6c60\uff08air-breathing lithium-air battery\uff09\u7684\u539f\u7406\u548c\u6784\u9020\u5e76\u8be6\u7ec6\u6982\u8ff0\u4e86\u8be5\u7535\u6c60\u4e2d\u7684\u8fc1\u79fb\u548c\u8026\u5408\u73b0\u8c61\u3002<\/p>\n

\u63a5\u4e0b\u6765\uff0c\u6211\u4eec\u5c06\u7ee7\u7eed\u63a8\u8fdb\u9502\u7a7a\u6c14\u7535\u6c60\u4e13\u9898\uff0c\u4e0b\u4e00\u5176\u4e2d\u4f1a\u5e26\u9886\u5927\u5bb6\u4e00\u89c8\u9502\u7a7a\u6c14\u7535\u6c60\u6700\u65b0\u70ed\u70b9\u7814\u7a76\uff0c\u9a6c\u4e0a\u56de\u6765\uff0c\u4e0d\u8981\u8d70\u5f00\u3002<\/p>\n

\u53c2\u8003\u6587\u732e\uff1a<\/strong><\/span>
\n[1] Bruce P G, Freunberger S A, Hardwick L J, et al. Li-O2 and Li-S batteries with high energy storage.[J]. Nature Materials, 2012, 11(1):19-29.
\n[2] Dunn B, Kamath H, Tarascon J M. Electrical energy storage for the grid: a battery of choices.[J]. Science, 2011, 334(6058):928-35.
\n[3] Girishkumar G, Mccloskey B, Luntz A C, et al. Lithium\u2212Air Battery: Promise and Challenges[J]. Journal of Physical Chemistry Letters, 2010, 1(14):2193-2203.
\n[4] Christensen J, Albertus P, Sanchez-Carrera R S, et al. A Critical Review of Li\/Air Batteries[J]. Journal of the Electrochemical Society, 2012, 159(2).
\n[5] Lu Y C, Gallant B M, Kwabi D G, et al. Lithium\u2013oxygen batteries: bridging mechanistic understanding and battery performance[J]. Energy & Environmental Science, 2013, 6(3):750-768.
\n[6] Zhu J, Yang D, Yin Z, et al. Graphene and Graphene-Based Materials for Energy Storage Applications[J]. Small, 2014, 10(17):3480-98.
\n[7] Song M K, Park S, Alamgir F M, et al. Nanostructured electrodes for lithium-ion and lithium-air batteries: the latest developments, challenges, and perspectives[J]. Materials Science & Engineering R Reports, 2011, 72(11):203-252.
\n[8] Song M K, Park S, Alamgir F M, et al. Nanostructured electrodes for lithium-ion and lithium-air batteries: the latest developments, challenges, and perspectives[J]. Materials Science & Engineering R Reports, 2011, 72(11):203-252.
\n[9] Wang J, Li Y, Sun X. Challenges and opportunities of nanostructured materials for aprotic rechargeable lithium\u2013air batteries[J]. Nano Energy, 2013, 2(4):443\u2013467.
\n[10] Yuan J, Yu J S, Sund\u00e9n B. Review on mechanisms and continuum models of multi-phase transport phenomena in porous structures of non-aqueous Li-Air batteries[J]. Journal of Power Sources, 2015, 278(278):352-369.<\/p>\n

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