日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Thermoplastic Network Formation as a Method for Stabilizing Salt Hydrate Particles

热塑性网络形成作为稳定盐水合物颗粒的一种方法

Averina, Elena; Fischer, Hartmut; Adan, Olaf C G; Huinink, Hendrik P

Understanding Hydration Transitions of CaBr(2)

了解 CaBr(2) 的水合转变

Eberbach, Michaela C; Shkatulov, Aleksandr I; Tinnemans, Paul; Huinink, Hendrik P; Fischer, Hartmut R; Adan, Olaf C G

Path-Dependent Hydration and Dehydration of CaCl(2)

CaCl(2) 的路径依赖性水合和脱水

Eberbach, Michaela C; Seo, Hyerin; Shkatulov, Aleksandr I; Tinnemans, Paul; Huinink, Hendrik P; Fischer, Hartmut R; Adan, Olaf C G

Elucidating the Dehydration Pathways of K(2)CO(3)·1.5H(2)O

阐明K₂CO₃·1.5H₂O的脱水途径

Aarts, Joey; Mazur, Natalia; Fischer, Hartmut R; Adan, Olaf C G; Huinink, Henk P

Mechanism and Kinetics of Hydration of CuSO(4)·H(2)O in the Presence of an Intermediate Step

CuSO₄·H₂O 在中间步骤存在下的水合机理和动力学

Cotti, Martina; Stahlbuhk, Amelie; Fischer, Hartmut R; Steiger, Michael; Adan, Olaf C G; Huinink, Henk P

The Effect of Nanoconfinement on Deliquescence of CuCl(2) Is Stronger than on Hydration

纳米限域效应对CuCl(2)潮解的影响强于对水合作用的影响

Eberbach, Michaela C; Huinink, Henk P; Shkatulov, Aleksandr I; Fischer, Hartmut R; Adan, Olaf C G

Vegetable oils as carbon and energy source for Aureobasidium melanogenum in batch cultivation

植物油作为黑曲霉分批培养的碳源和能源

van Nieuwenhuijzen, Elke J; Sailer, Michael F; van den Heuvel, Edwin R; Rensink, Stephanie; Adan, Olaf C G; Samson, Robert A

Film Formation of High T(g) Latex Using Hydroplasticization: Explanations from NMR Relaxometry

利用水塑化法制备高玻璃化转变温度(Tg)乳胶膜:基于核磁共振弛豫法的解释

Voogt, Benjamin; Huinink, Hendrik P; Erich, Sebastiaan J F; Scheerder, Jurgen; Venema, Paul; Keddie, Joseph L; Adan, Olaf C G

Oil type and cross-linking influence growth of Aureobasidium melanogenum on vegetable oils as a single carbon source

油的类型和交联程度会影响以植物油为单一碳源的黑曲霉的生长。

Peeters, Loes H M; Huinink, Hendrik P; Voogt, Benjamin; Adan, Olaf C G

Conidia of Penicillium rubens formed at low water activities can attract more water

红青霉菌在低水分活度下形成的孢子可以吸引更多水分

van Laarhoven, Karel A; Peeters, Loes H M; Bekker, Mirjam; Huinink, Hendrik P; Adan, Olaf C G