1 |
Synthesis of Polystyrene Nanoparticles using Thermally Reversible Hydrogel as Polymerization Field Yamada N, Ouchi S, Yamamoto T KAGAKU KOGAKU RONBUNSHU, 47(1), 11, 2021 |
2 |
A Brief Review of Self-Healing Polyurethane Based on Dynamic Chemistry Lee WJ, Oh HC, Cha SH Macromolecular Research, 29(10), 649, 2021 |
3 |
Thermally reversible shape transformation of nano-patterned PNIPAAm hydrogel Kim B, Lee JS Polymer Bulletin, 78(6), 3353, 2021 |
4 |
RAFT polymerization of styrene mediated by oxazolyl-functionalized trithiocarbonate RAFT agents Summers GJ, Motsoeneng TS, Summers CA Polymer Bulletin, 78(4), 2251, 2021 |
5 |
Design of the reversible biphasic arrangement in the microfluidic chip reactor for asymmetric hydrogenation reactions Kluson P, Stavarek P, Penkavova V, Vychoclilova H, Hejda S, Bendova M, Dosek M Chemical Engineering Research & Design, 153, 537, 2020 |
6 |
Recyclable solid-solid phase-change materials cross-linked by reversible oxime-carbamate bonds for solar energy storage Yuan AQ, Wu B, Wang Y, Zhao YY, Liu QF, Lei JX International Journal of Energy Research, 44(11), 9185, 2020 |
7 |
Lignin-retaining porous bamboo-based reversible thermochromic phase change energy storage composite material Heng YQ, Feng NR, Liang YX, Hu DY International Journal of Energy Research, 44(7), 5441, 2020 |
8 |
Analyses of reversible solid oxide cells porosity effects on temperature reduction Weng FB, Dlamini MM, Jung GB, Lian CX International Journal of Hydrogen Energy, 45(21), 12170, 2020 |
9 |
Development of a PrBaMn2O5+delta-La0.8Sr0.2Ga0.85Mg0.15O3-delta composite electrode by scaffold infiltration for reversible solid oxide fuel cell applications Kwon Y, Kang S, Bae J International Journal of Hydrogen Energy, 45(3), 1748, 2020 |
10 |
Preparation and characterization of a redox-stable Pr0.4Sr0.6Fe0.875Mo0.125O3-delta material as a novel symmetrical electrode for solid oxide cell application Zhang D, Zhang K, He T, Yu N, Zhao YQ, Wang Y, Liu T International Journal of Hydrogen Energy, 45(41), 21825, 2020 |