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Advancement in separation materials for blood purification therapy 被引量:5
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作者 Jia Ju Feixue liang +6 位作者 Xiaoxin Zhang Ran Sun Xiaoguang Pan Xiaoyun Guan Guanning Cui Xuan He mengyan li 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2019年第6期1383-1390,共8页
Blood purification refers to the extra corporeal therapies of removing potentially toxic substances, in which blood is circulated through an adsorption system loading separation materials. High-efficient inexpensive s... Blood purification refers to the extra corporeal therapies of removing potentially toxic substances, in which blood is circulated through an adsorption system loading separation materials. High-efficient inexpensive separation materials are critical to success. In this review, separation materials such as polymers and nanomaterials are summarized and compared. Combining the advantages of the adsorptive membranes and nanomaterials, organic–inorganic hybrid/blend membranes have been developed explosively. These hybrid/blend membranes have both the characteristics of high permeability, easy fabrication, good biocompatibility of adsorptive membranes, and characteristics of fast adsorption rate and high adsorption capacity of nanomaterials. The preparation and modification methodology of the separation materials is reviewed. For affinity separation materials, the relationship of ligand chemistry, ligand density and pores of the matrix is discussed. This paper also summarizes some interesting applications in separation materials for removal of bilirubin, endotoxin, toxic metal ions, cytokine, etc. 展开更多
关键词 Blood purification Organic INORGANIC hybrid/blend membrane Albumin-bound TOXINS Preparation and modification LIGAND density
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The Comparison of Cold tolerance of Three Species of Evergreen Broad-leaved Woody Plants 被引量:1
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作者 Sifan li mengyan li +2 位作者 Runfang ZHANG Pingsheng LENG Man SHEN 《Agricultural Biotechnology》 CAS 2021年第2期19-24,共6页
[Objectives]This study aimed to select evergreen broad-leaved woody plants with higher ornamental value and stronger cold tolerance for introduction from the south to the north,and to apply them to urban greening,so a... [Objectives]This study aimed to select evergreen broad-leaved woody plants with higher ornamental value and stronger cold tolerance for introduction from the south to the north,and to apply them to urban greening,so as to enrich the plant community structure of the landscape in the northern region.[Methods]Three species of evergreen broad-leaved woody plants,i.e.,Ligustrum lucidum,Ilex cornuta and Eriobotrya japonica,were selected as the experimental materials.The morphological performances and the changes of the physiological indexes were observed and measured during the overwintering period in the open field in Beijing.The relationship between the indexes and the low temperature was also analyzed.The strength of cold tolerance of the three species was compared.[Results]The electrical conductivity,the contents of MDA and proline were negatively correlated with the corresponding low temperature.The contents of soluble sugar and soluble protein increased with the dropping temperature,but they had little response to the short-term temperature rise.[Conclusions]Combined with morphological and physiological indexes,it was found that the changes of the contents of proline and soluble sugar among the physiological indexes were closely related to the cold tolerances of the three tree species of broad-leaved woody plants.The cold tolerance of I.cornuta was the strongest,E.japonica was the second,and that of L.lucidum was the worst. 展开更多
关键词 Evergreen broad-leaved woody plant Cold tolerance OVERWINTERING
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Edge engineering in chemically active two-dimensional materials
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作者 lijun Zhou mengyan li +3 位作者 Wei Wang Cong Wang Huiping Yang Yang Cao 《Nano Research》 SCIE EI CSCD 2022年第11期9890-9905,共16页
When "cut off" continuous and uniform basal plane of two-dimensional(2D)materials,edges appear at cross-sections.Such edges with unique one-dimensional(1D)structures and bound-states significantly alter mate... When "cut off" continuous and uniform basal plane of two-dimensional(2D)materials,edges appear at cross-sections.Such edges with unique one-dimensional(1D)structures and bound-states significantly alter materials’local chemical activities and have been extensively investigated as model platforms for investigating structure–property–performance relationships for chemistry.Many interesting phenomena have been discovered in the past decades,highlighting the importance of interactions between active species and edge atoms at the atomic level and making 1D edges as emerging catalysts with high efficiency,promising candidates for battery and electrochemical contacts.Here,this review focuses on the recent progress of edge synthesis and structural engineering methods,understanding of edge structure–activity mechanisms,and potential applications using edge sites.Challenges and prospects are also envisioned. 展开更多
关键词 two-dimensional(2D)materials one-dimensional(1D)edges relation of structure-activity
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