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试论粗放式创新、致毁创新、可持续创新理论与知识安全学 被引量:10
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作者 刘益东 《科技资讯》 2014年第25期238-242,共5页
本文简要论述了粗放式创新、致毁创新、软风险、硬风险、容负容废、可持续创新、新科学观等新概念和可持续创新理论、创新人才评鉴法、知识安全学,力图在概念、理论、学科、人才等方面充实和发展社会可持续发展理论与战略研究。
关键词 粗放式创新 致毁创新 可持续创新理论 知识安全学 硬风险 软风险 新科学观 容负容度
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An ultralong-life SnS-based anode through phosphate-induced structural regulation for high-performance sodium ion batteries 被引量:2
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作者 Ying Wang Hongguan Li +7 位作者 Silin Chen Boyin Zhai Shuanlong Di Guangying Gao Sangwook Lee Sangeun Chun Shulan Wang Li Li 《Science Bulletin》 SCIE EI CAS CSCD 2022年第20期2085-2095,M0004,共12页
As a star representative of transition metal sulfides, Sn S is viewed as a promising anode-material candidate for sodium ion batteries due to its high theoretical capacity and unique layered structure. However,the ext... As a star representative of transition metal sulfides, Sn S is viewed as a promising anode-material candidate for sodium ion batteries due to its high theoretical capacity and unique layered structure. However,the extremely poor electrical conductivity and severe volume expansion strongly hinder its practical application while achieving a high reversible capacity with long-cyclic stability still remains a grand challenge. Herein, different from the conventional enhancement method of elemental doping, we report a rational strategy to introduce PO_(4)^(3-)into the Sn S layers using phytic acid as the special phosphorus source.Intriguingly, the presence of PO_(4)^(3-)in the form of Sn–O–P covalent bonds can act as a conductive pillar to buffer the volume expansion of Sn S while expanding its interlay spacing to allow more Na+storage, supported by both experimental and theoretical evidences. Profiting from this effect combined with microstructural metrics by loading on high pyridine N-doped reduced graphene oxide, the as-prepared material presented an unprecedented ultra-long cyclic stability even after 10,000 cycles along with high reversible capacity and excellent full-cell performances. The findings herein open up new opportunities for elevating electrochemical performances of metal sulfides and provide inspirations for the fabrication of advanced electrode materials for broad energy use. 展开更多
关键词 SNS Phytic acid Sodium ion batteries Ultra-long cyclic stability ANODE
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