研究成果 |
1、以第一或通讯作者发表论文50余篇,部分成果如下: (1)Yuanna Sun*,A cell-membrane-mimetic hydrogel electrolyte for simultaneouslysuppressing dendrites and passivation in zinc-air batteries,Nano Energy,2026, 148, 111698.(SCI一区Top, IF=17.1) (2)Yuanna Sun*,Microphase separation-induced conductivity enhancement in anti-swellingamphiphilic ionogels for multimodal sensing,Chemical Engineering Journal,2026,529,172746.(SCI一区Top, IF=13.2) (3)Yuanna Sun*,A high-ion-conductivity hydrogel electrolyte based on sodium starch phosphate for dendrite-suppressed, long-cycling flexible zinc-air batteries,Chemical Engineering Journal,2026,10.1016/j.cej.2026.177439.(SCI一区Top, IF=13.2) (4)Yuanna Sun*,Synergistic vehicular-grotthuss conduction in double-network hydrogelelectrolytes for zinc dendrite suppression in zinc-air batteries,Journal of Colloid And Interface Science,2026,2026,703,139064.(SCI一区Top, IF=9.7) (5)Yuanna Sun*,Review of materials for solid oxide electrolysis cells in high-temperature ammonia synthesis,Chemical Engineering Journal,2026,535, 175612.(SCI一区Top, IF=13.2) (6)Yuanna Sun*,Reaction mechanism and competitive dynamics of core processes inhigh-temperature co-electrolysis within conventional planar solid oxideelectrolysis cells,Fuel,2026, 427, 139645.(SCI二区Top, IF=7.5) (7)Yuanna Sun*,Molecularly synergistic organogel with engineered conductivity andanti-swelling unity for reliable sleep apnea monitoring,Chemical Engineering Journal,2025, 525, 170116.(SCI一区Top, IF=13.2) (8)Yuanna Sun*,Vapor-phase polymerization of polypyrrole in PVA hydrogels for enhanced electrical conductivity in multimodal sensing applications,Chemical Engineering Journal,2025, 525, 169986.(SCI一区Top, IF=13.2) (9)Yuanna Sun*,A hydrogen-bond armored MXene hydrogel for oxidation-resistant, dual-mode wearable sensors,Journal ofMaterials Chemistry A,2025,13, 37581.(SCI二区Top, IF=9.5) (10)Yuanna Sun*,Gelatin-based gel polymer electrolytes with high ionic conductivity fortemperature adaptive flexible zinc-air batteries,International Journal of Biological Macromolecules,2025,310, 143218.(SCI二区Top, IF=8.5) (11)Yuanna Sun*,DMSO-Based Organohydrogel ElectrolyteSuppressing Zinc Dendrites for Long-Cycling Zinc-Air Batteries,ACS Applied Polymer Materials,2025, 7, 16416.(SCI二区Top, IF=5.3) (12)Yuanna Sun*,anti-swelling and photoresponsive MXene-basedpolyampholyte hydrogel sensors for underwaterpositioning and urban waterlogging pre-warning,Journal of Materials Chemistry A,2024, 12,22166.(SCI二区Top, IF=9.5) (13)Yuanna Sun*,A robust and adhesive anti-swelling hydrophobicionogel with prolonged stability for strain andtemperature sensors,Journal of Materials Chemistry A,202412, 33734.(SCI二区Top, IF=9.5) (14)Yuanna Sun*,High strength bacterial cellulose/PANa-based hydrogelpolyelectrolyte forflexible zinc- air batteries,Journal of Energy Storage, 2024, 100,113629.(SCI二区Top, IF=9.8) (15)Yuanna Sun*, Plant-Inspired Conductive Hydrogels with Long-Lasting Stability and Low Temperature Tolerance for Flexible Sensors and Signal Transmission Carriers,European Polymer Journal,2024, 189 (16)Yuanna Sun*, Fenling Shi, Fabrication of versatile polyvinyl alcohol and carboxymethyl cellulose- based hydrogels for information hiding and flexible sensors: Heat-induced adjustable stiffness and transparency, International Journal of Biological Macromolecules, 2023, 253, 126950.(SCI二区Top, IF=8.5) (17)Yuanna Sun*, Kuangkun Bin, Wet-laiding hybrid PVA fibers into high electrolyte-uptake zinc-air battery separators: an efficient and cost-saving approach, Journal of Solid State Electrochemistry, 2023 (18)Yuanna Sun*, Shuaishuai Lu, Long-lasting moisture and anti-freezing tough organohydrogels based on multi-functional nano-micelles for flexible dual-response sensors, Journal of Applied Polymer Science, 2022, 139(38). (19)Yuanna Sun*,Ultra-stretchable, anti-freezing conductive hydrogels crosslinked by strong hydrogen bonding for flexible sensors, Journal of Polymer Science, 2022, 60 (18) (20)Yuanna Sun*,Shuaishuai Lu, Qingshan Li, Yanwei Ren, Yuanqing Ding, Hailiang Wu,Xinhai He*, High strength zwitterionic nano-micelle hydrogels with superior self-healing, adhesive and ion conductive properties. European Polymer Journal, 2020, 133, 109761. (21)Yuanna Sun*, Understanding the occurrence of the individual CO2 electrolysis during H2O-CO2co-electrolysis in classic planar Ni-YSZ/YSZ /LSM-YSZ solid oxide cells. Electrochimica Acta, 2019, 318, 440-448. (22)Yuanna Sun,Yufen Li,Ying Xiao, “Electric Field Actuation of Tough Electroactive Hydrogels Cross- Linked by Functional Triblock Copolymer Micelles”ACS Applied Materials and Interfaces2016,8, 26326-26331. (23)Yuanna Sun, Shuang Liu, Jun Fu, “Multi-Responsive and Tough Hydrogels Based on Triblock Copolymer Micelles as Multi-functional Macro-crosslinkerssponsive micelle hydrogels with ultrahigh performance”, Chemical Communications 2015, 51, 8512-8515. (24)Yuanna Sun, Guorong Gao, Jun Fu, “Super Tough, Ultra-stretchable, and Thermoresponsive Hydrogels with Functionalized Triblock Copolymer Micelles as Macro-Cross-Linkers”, ACS Macro Letters 2014, 3, 496-500. (25)Yuanna Sun, Lixin Xue, Yaojian Zhang, “High flux polyamide thin film composite forward osmosis membranes prepared from porous substrates made of polysulfone and polyethersulfone blends”, Desalination 2014, 336,72-79. (26)Gaolai Du,Yuanna Sun, Jun Fu*. “Tough and Biocompatible Hydrogels Based on in situ Interpenetrating Networks of Di-thiol- connected Graphene Oxide and Poly(vinyl alcohol)”, ACS Applied Materials and Interfaces 2015, 7, 3003-3008. (27)Guorong Gao,Yuanna Sun, Jun Fu*. “Ultra stretchable, tough and self−healable polyacrylamide / montmorillonite nanocomposite hydrogels” ACS Applied Materials and Interfaces 2015, 7, 5029-5037. (28)Yangjing Li,Yuanna Sun, Jun Fu*, “Multi-responsive nanocomposite hydrogels with high strength and toughness”, Journal of Materials Chemistry B, 2016, 4,1733-1739. 2、专著 (1)Book:Yuanna Sun,Amphiphilic Polymer Co-networks: Synthesis, Properties, Modelling and Applications,the Royal Society of Chemistry,(英国皇家化学会), Chapter 9, Ultra-stretchable and Multi- responsive Tough Hydrogels Crosslinked by Triblock Copolymer Micelles, ISBN 978-1-78801-370-3, DOI: 10.1039/9781788015769-00199 3、专利 (1)一种抗低温仿生导电水凝胶及其制备方法和应用, (2)一种基于反应型胶束的导电水凝胶及其制备方法和应用 (3)一种基于反应型胶束的导电水凝胶及其制备方法和应用 (4)一种基于嵌段共聚物的高强度响应型水凝胶及其制备方法 (5)一种复合正渗透膜的制备方法,发明专利 |