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Co(OH)_(2)层对负载型Pt纳米晶在催化氨硼烷水解产氢中的提升作用
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作者 王思宇 黄莉 +4 位作者 刘成勇 贺文雪 龙志鑫 潘亚 孙治湖 《Chinese Journal of Chemical Physics》 SCIE EI CAS CSCD 2023年第2期141-152,I0001-I0004,I0054,共17页
氨硼烷催化水解脱氢是一种很有前途的产氢和储氢方式.为此,需要开发新型催化剂以降低贵金属的使用量而同时保持其高活性和稳定性.本文利用过渡金属Co(OH)_(2)层来调整Pt基金属催化剂的组成,构建系列不同Pt/Co比的Pt-Co(OH)_(2)/SiO_(2)... 氨硼烷催化水解脱氢是一种很有前途的产氢和储氢方式.为此,需要开发新型催化剂以降低贵金属的使用量而同时保持其高活性和稳定性.本文利用过渡金属Co(OH)_(2)层来调整Pt基金属催化剂的组成,构建系列不同Pt/Co比的Pt-Co(OH)_(2)/SiO_(2)催化剂,对氨硼烷水解的氢生成速率呈现火山型曲线.当Pt:Co摩尔比为1:11时,催化剂的性能最佳,其转换频率值829 molH_(2)·molpt-1.min-1,优于大多数报道的Pt基催化剂,表观活化能从61.6 kJ/mol降低到31.2 kJ/mol.活性增强的原因在于Pt-Co(OH)_(2)界面上发生从Co(OH)_(2)向Pt的电荷转移,使Pt表面富电子,有利于H_(2)O分子中O-H键的氧化断裂,降低反应能垒,从而显著提高其催化活性和循环稳定性. 展开更多
关键词 氨硼烷水解 催化脱氢 金属氧化物界面 铂基纳米催化剂 反应动力学
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Polydatin prevents the induction of secondary brain injury after traumatic brain injury by protecting neuronal mitochondria 被引量:12
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作者 Li Li Hong-Ping Tan +8 位作者 cheng-yong liu Lin-Tao Yu Da-Nian Wei Zi-Chen Zhang Kui Lu Ke-Sen Zhao Marc Maegele Dao-Zhang Cai Zheng-Tao Gu 《Neural Regeneration Research》 SCIE CAS CSCD 2019年第9期1573-1582,共10页
Polydatin is thought to protect mitochondria in different cell types in various diseases.Mitochondrial dysfunction is a major contributing factor in secondary brain injury resulting from traumatic brain injury.To inve... Polydatin is thought to protect mitochondria in different cell types in various diseases.Mitochondrial dysfunction is a major contributing factor in secondary brain injury resulting from traumatic brain injury.To investigate the protective effect of polydatin after traumatic brain injury,a rat brain injury model of lateral fluid percussion was established to mimic traumatic brain injury insults.Rat models were intraperitoneally injected with polydatin(30 mg/kg)or the SIRT1 activator SRT1720(20 mg/kg,as a positive control to polydatin).At 6 hours post-traumatic brain injury insults,western blot assay was used to detect the expression of SIRT1,endoplasmic reticulum stress related proteins and p38 phosphorylation in cerebral cortex on the injured side.Flow cytometry was used to analyze neuronal mitochondrial superoxide,mitochondrial membrane potential and mitochondrial permeability transition pore opened.Ultrastructural damage in neuronal mitochondria was measured by transmission electron microscopy.Our results showed that after treatment with polydatin,release of reactive oxygen species in neuronal mitochondria was markedly reduced;swelling of mitochondria was alleviated;mitochondrial membrane potential was maintained;mitochondrial permeability transition pore opened.Also endoplasmic reticulum stress related proteins were inhibited,including the activation of p-PERK,spliced XBP-1 and cleaved ATF6.SIRT1 expression and activity were increased;p38 phosphorylation and cleaved caspase-9/3 activation were inhibited.Neurological scores of treated rats were increased and the mortality was reduced compared with the rats only subjected to traumatic brain injury.These results indicated that polydatin protectrd rats from the consequences of traumatic brain injury and exerted a protective effect on neuronal mitochondria.The mechanisms may be linked to increased SIRT1 expression and activity,which inhibits the p38 phosphorylation-mediated mitochondrial apoptotic pathway.This study was approved by the Animal Care and Use Committee of the Southern Medical University,China(approval number:L2016113)on January 1,2016. 展开更多
关键词 nerve REGENERATION TRAUMATIC brain injury POLYDATIN MITOCHONDRIA endoplasmic reticulum stress SIRT1 reactive oxygen species p38 MITOCHONDRIAL membrane potential MITOCHONDRIAL permeability transition pore lateral fluid PERCUSSION neural REGENERATION
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