Aster (紫菀),其名源自希腊语的“星”,因其星形花序得名。其花形蕴含3个设计学特点:径向对称的秩序、多边形弧的模块化结构及严谨的数学规律性。在Aster by Joshua Paris餐厅的设计中,设计师以此为灵感,通过“中心—放射—层叠”的手法...Aster (紫菀),其名源自希腊语的“星”,因其星形花序得名。其花形蕴含3个设计学特点:径向对称的秩序、多边形弧的模块化结构及严谨的数学规律性。在Aster by Joshua Paris餐厅的设计中,设计师以此为灵感,通过“中心—放射—层叠”的手法,把几何逻辑转化为可感知的氛围,邀人于花心相聚,在星光下共餐。主厨Joshua Paris (JP)拥有19年的烹饪历程,足迹遍及多国,其烹饪的哲学核心是不断追问“为何”,并将菜品磨砺至无可更改。这份不妥协,亦是Aster的灵魂所在。展开更多
Polydopamine(PD)coating,one of the simplest and most versatile surface functionalization method faces challenges in terms of stability and reactivity.In this study,we propose an in situ dynamic reassembly approach to ...Polydopamine(PD)coating,one of the simplest and most versatile surface functionalization method faces challenges in terms of stability and reactivity.In this study,we propose an in situ dynamic reassembly approach to address these challenges.By immersing a pre-deposited PD coating in a strong alkaline solution containing poly(allylamine)hydrochloride(PAH),the dissociated PD oligomers undergo covalent crosslinking in situ,leading to the formation of a reconstructed PDPA coating enriched with stable amino groups through thorough crosslinking.The PDPA coating demonstrates superior chemical and mechanical stability compared to PD,while enhancing multifunctional properties and offering improved surface functional modification potential.The PDPA coating holds promise in materials science,biomedical engineering,and nanotechnology,enabling versatile surface modification and functionalization in extreme conditions.展开更多
文摘Aster (紫菀),其名源自希腊语的“星”,因其星形花序得名。其花形蕴含3个设计学特点:径向对称的秩序、多边形弧的模块化结构及严谨的数学规律性。在Aster by Joshua Paris餐厅的设计中,设计师以此为灵感,通过“中心—放射—层叠”的手法,把几何逻辑转化为可感知的氛围,邀人于花心相聚,在星光下共餐。主厨Joshua Paris (JP)拥有19年的烹饪历程,足迹遍及多国,其烹饪的哲学核心是不断追问“为何”,并将菜品磨砺至无可更改。这份不妥协,亦是Aster的灵魂所在。
基金supported by the National Natural Science Foundation of China(Nos.82301156,32371377,and 52203131)Leading Talent Project of Guangzhou Development District(No.2020L013)+1 种基金the Zhejiang Provincial Natural Science Foundation of China(No.LTGY23H140001)the Fundamental Research Funds for Wenzhou Medical University(No.KYYW202208)。
文摘Polydopamine(PD)coating,one of the simplest and most versatile surface functionalization method faces challenges in terms of stability and reactivity.In this study,we propose an in situ dynamic reassembly approach to address these challenges.By immersing a pre-deposited PD coating in a strong alkaline solution containing poly(allylamine)hydrochloride(PAH),the dissociated PD oligomers undergo covalent crosslinking in situ,leading to the formation of a reconstructed PDPA coating enriched with stable amino groups through thorough crosslinking.The PDPA coating demonstrates superior chemical and mechanical stability compared to PD,while enhancing multifunctional properties and offering improved surface functional modification potential.The PDPA coating holds promise in materials science,biomedical engineering,and nanotechnology,enabling versatile surface modification and functionalization in extreme conditions.