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The surface binding and energy issues in the rational design of separators for Li||S batteries
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作者 Hongfang Du Lijing Wang +8 位作者 Shuyu Cheng Chao Wu Sheng Yang Yang Liu Yi Zhao Dandan Cui Shaowei Zhang Shixue Dou Liangxu Lin 《Journal of Energy Chemistry》 2026年第1期987-1013,I0021,共28页
Lithium-sulfur batteries(LSBs)represent a next-generation energy storage technology,but widespread applications are restricted by the shuttle of lithium polysulfides(LiPSs).The rational design of separators has been d... Lithium-sulfur batteries(LSBs)represent a next-generation energy storage technology,but widespread applications are restricted by the shuttle of lithium polysulfides(LiPSs).The rational design of separators has been demonstrated to be one of the most efficient and cost-effective strategies to curb the shuttle effect,and tremendous research progress has been achieved.The efficiency of a separator depends on its interaction with LiPSs,which is governed by the surface energy and binding strength.Despite several review works that have been reported to advance the separators,most of them primarily focus on active material innovation and construction.The most crucial issues of surface binding energy have not been systematically reviewed,limiting the precise design of efficient separators.In this review,fundamentals related to surface energy and binding interactions with LiPSs are comprehensively analyzed and discussed.With surface binding and energy main lines,the advancements in separator engineering strategies are elaborately summarized and discussed.Moreover,techniques for evaluating affinity to LiPSs are thoroughly analyzed to avoid any ambiguities in measurement.Based on the research context,valuable research directions are suggested to construct efficient separators.This work provides guidelines to regulate the surface binding and energy of separators for high-performance LSBs. 展开更多
关键词 Lithium-sulfur batteries SEPARATOR surface binding affinity surface energy Rational design
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钛表面粗糙度对成骨细胞核心结合因子α1亚基基因表达的影响 被引量:3
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作者 范震 贾爽 苏俭生 《中华口腔医学杂志》 CAS CSCD 北大核心 2010年第8期466-470,共5页
目的 通过研究种植体表面粗糙度对成骨细胞黏附、增殖、碱性磷酸酶(alkaline phosphatase,ALP)含量以及核心结合因子α1亚基(core bindingfactor alpha 1 subunit,Cbfα1)基因表达的影响,探讨种植体表面形态影响界面生物学反应的可... 目的 通过研究种植体表面粗糙度对成骨细胞黏附、增殖、碱性磷酸酶(alkaline phosphatase,ALP)含量以及核心结合因子α1亚基(core bindingfactor alpha 1 subunit,Cbfα1)基因表达的影响,探讨种植体表面形态影响界面生物学反应的可能途径.方法 直径15 mm、厚2 mm的纯钛圆盘试件48个,均分为4组,每组12个.分别采用粒度为88~125μm(微度粗糙组)、125~150μm(中度粗糙组)、250~500μm(重度粗糙组)的金刚砂颗粒喷砂,后两组试件再用10%的盐酸、硫酸混合液处理5 min;剩余1组未处理作为对照组.测试4组试件表面粗糙度.将成骨细胞接种于4组试件表面,采用扫描电镜、吖啶橙荧光染色及考马斯亮蓝染色检测试件粗糙度对成骨细胞黏附、增殖的影响.采用酶联免疫吸附实验(enzyme linked immunosorbent assay,ELISA)测定成骨细胞ALP含量的变化.采用荧光实时定量聚合酶链反应测定成骨细胞Cbfα1基因表达的变化.结果 处理后微、中、重度粗糙组和对照组的粗糙度分别为(1.00±0.20)、(1.67±0.08)、(2.40±0.20)和(0.12±0.03)μm.3个粗糙组成骨细胞的数量及ALP含量均高于对照组(P<0.05).与对照组相比,粗糙表面上Cbfα1的mRNA水平明显增加(P<0.05);中度粗糙组为(0.93±0.03);微度粗糙组次之,为(0.50±0.03);重度粗糙组最低,为(0.37±0.07);对照组仅为(0.10±0.06).结论 种植体表面粗糙度的差异可造成成骨细胞骨源性基因Cbfα1表达及ALP含量不同.粗糙度在1~2μm范围内成骨细胞的生长、ALP含量及Cbfα1基因的表达较强. 展开更多
关键词 牙种植 核心结合因子α1亚基 表面粗糙度
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