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糖尿病患者角膜上皮损伤愈合延迟的研究进展 被引量:4
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作者 吴燕妮 张琪 《国际眼科杂志》 CAS 北大核心 2020年第8期1367-1370,共4页
糖尿病患者角膜上皮损伤后愈合延迟较常见,持续不愈合的角膜损伤可导致复发性上皮糜烂、角膜溃疡甚至角膜穿孔,影响视功能。本文就糖尿病患者角膜上皮损伤愈合延迟的病理基础、发病机制以及相关治疗的研究进展做一综述。概述了糖尿病患... 糖尿病患者角膜上皮损伤后愈合延迟较常见,持续不愈合的角膜损伤可导致复发性上皮糜烂、角膜溃疡甚至角膜穿孔,影响视功能。本文就糖尿病患者角膜上皮损伤愈合延迟的病理基础、发病机制以及相关治疗的研究进展做一综述。概述了糖尿病患者角膜上皮结构和功能的改变,阐述了高糖、蛋白酶、泪膜、生长因子和细胞因子、角膜神经以及microRNA等在发病机制中的作用,总结了治疗糖尿病患者角膜上皮损伤愈合延迟的最新思路。 展开更多
关键词 糖尿病 角膜上皮 愈合延迟
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Ultralow platinum-loading PtPdRu@PtRuIr/C catalyst with excellent CO tolerance and high performance for the methanol oxidation reaction 被引量:3
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作者 yan-ni wu Shi-Jun Liao +2 位作者 Hai-Fu Guo Xiang-Ying Hao Zhen-Xing Liang 《Rare Metals》 SCIE EI CAS CSCD 2014年第3期337-342,共6页
Carbon-supported PtPdRuIr, Pd@PtRuIr, PtPd@PtRuIr, and PtPdRu@PtRuIr catalysts were prepared by a colloidal method and their catalytic activities to the methanol oxidation reaction in the acidic media were extensively... Carbon-supported PtPdRuIr, Pd@PtRuIr, PtPd@PtRuIr, and PtPdRu@PtRuIr catalysts were prepared by a colloidal method and their catalytic activities to the methanol oxidation reaction in the acidic media were extensively investigated at room temperature. The catalysts were characterized by transmission electron microscopy and X-ray diffraction techniques, and their electrochemical behavior was evaluated by the cyclic voltammetry. The PtPdRu@PtRuIr/C catalyst is found to yield much higher electrocatalytic activity than the other ones and the commercial catalyst. For example, the Pt metal mass-specific activity of this PtPdRu@PtRuIr/C(Pt content 10 wt%,1.7 mAácm-2ámg-1) electrocatalyst is *3-fold higher than that of the commercial JM 40 % Pt/C(0.6 mAácm-2ámg-1)electrocatalysts, and the If/Ib ratio of PtPdRu@PtRuIr/C is1.6, which is higher than that of the JM 40 % Pt/C(0.9). The improvement may result from the high dispersion of the active metal catalyst and the synergistic effect between the PtRuIr and PtPdRu layers. It is thus concluded that the pseudo-core-shell structure could significantly improve the methanol electro-oxidation activity and CO tolerance of the electrocatalyst. 展开更多
关键词 CATALYST Colloidal approach Methanoloxidation PtPdRu@PtRuIr/C
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