Results 131 to 140 of about 1,390 (212)

Fluoride Release Process of Fluoride-containing Kaolinite-acrylamide Composite Resins as Pit and Fissure Sealants

open access: yes, 2013
目的 由國立台灣大學臨床牙醫研究所與國立台北科技大學材料科學與工程研究所共同研發的新型溝隙封填材料—含氟高嶺土/丙烯醯胺複合樹脂,和臨床常使用的含氟溝隙封填劑ClinproTM比較,有較佳的韌性,較強的硬度以及較低黏稠度,且其不具生物毒性,我們欲進一步了解新研發的含氟高嶺土/丙烯醯胺複合樹脂與市售其他二種—聚合樹脂類(ClinproTM)與玻璃離子體類(ClinproTM XT)—溝隙封填劑的氟離子釋放過程與再吸收結果,並加以比較。 材料與方法 本實驗所用來比較的三種材料:實驗組—含氟高嶺土 ...
Kuo, Wen-Ling, 郭玟伶
core  

Why and How Poly(acrylic Acid) Stabilizes and Structures Si/C Supraparticles for Li‐Ion Batteries: Unraveling PAA–Si/C Interactions From Dispersion to Electrode Integration

open access: yesChemElectroChem, Volume 13, Issue 10, 19 May 2026.
In lithium‐ion battery silicon anodes, achieving reliable electrode processing, consistent electrochemical performance, and mechanically stable electrodes remains a challenge. One strategy to overcome these limitations is to assemble silicon–carbon (Si/C) nanoparticles with alloy‐like Si–C bonding into micrometer‐sized secondary particles ...
Adil Amin   +8 more
wiley   +1 more source

Interlayer‐Driven Interfacial Stabilization in Solid Electrolytes for Lithium Batteries: Promises and Challenges

open access: yesChemSusChem, Volume 19, Issue 9, 14 May 2026.
Interfacial instability severely limits sulfide and halide solid electrolytes in solid‐state lithium batteries. The interlayer engineering strategies that suppress dendrites, electrolyte reduction, space‐charge effects, and uneven CEI formation have crucial importance to address these issues.
Madan Bahadur Saud   +5 more
wiley   +1 more source

Home - About - Disclaimer - Privacy