科研情況: ? 主要研究方向: 1、電化學(xué)儲(chǔ)能研究(鋰離子電池、超級(jí)電容器等); 2、生物質(zhì)基可穿戴電子、傳感器研究; 3、纖維素基電磁屏蔽材料、產(chǎn)電材料研究; ? 近5年科研項(xiàng)目: 1、湖南省自然科學(xué)基金項(xiàng)目,纖維素基非對(duì)稱結(jié)構(gòu)濕敏膜的構(gòu)筑及其離子傳輸機(jī)制研究,2025.01-2027.12,在研,主持。 2、湖南省教育廳項(xiàng)目,纖維素濕氣產(chǎn)電材料設(shè)計(jì)及產(chǎn)電機(jī)制研究,2023.10-2025.10,在研,主持。 3、長(zhǎng)沙理工大學(xué)科研啟動(dòng)項(xiàng)目,纖維素基柔性自供電傳感器的構(gòu)建及性能研究,2022.01-2025.1,在研,主持。 4、國(guó)家重點(diǎn)研發(fā)計(jì)劃(2018YFC1902102),污泥安全脫毒與資源化利用關(guān)鍵技術(shù)及示范, 2018.12-2022.11,結(jié)題,參與。 5、湖南省電力與交通材料重點(diǎn)實(shí)驗(yàn)室開(kāi)放基金,2023.01-2024.12,在研,主持。 ? 近5年科研論文: 1. Zhang YZ, Wei Y, Qian YY, et al. Lignocellulose Enabled Highly Transparent Nanopaper with Tunable Ultraviolet-Blocking Performance and Superior Durability [J]. ACS Sustainable Chem. Eng 2020, 8, 17033-17041. 2. Zhang YZ, Qian YY, Liu YJ, et al. Multivalent Metal Ion Cross-Linked Lignocellulosic Nanopaper with Excellent Water Resistance and Optical Performance [J]. Biomacromolecules 2022, 23, 1920-1927. 3. Zhang YZ, Zhao WG, Lin BP, et al. Dually Modified Starch-Based Coating for Improving Barrier and Mechanical Performances of Paper Toward Food Packaging [J]. Journal of Applied Polymer Science 2025, 141(1), e56736. 4. Zhang YZ, Liu JG, Su YQ. Effect of Silica Gel in Causticized Calcium Carbonate from Nonwood Pulping on the AKD Sizing Efficiency of Paper [J]. BioResources 2018, 13(2), 3386-3394. 5. Dai Z, Zhang YZ, Ma Y, et al. Nickel-cobalt-TiO2 co-doped lignin based carbon nanofibers: Versatile integrated material for supercapacitor and microwave absorption. Diamond and Related Materials, 2023, 139, 120330. 6. Qian YY, Liu YJ, Zhang YZ, et al. Protonation and dip-coating synergistically enhancing dimensional stability of multifunctional cellulose-based films [J]. Cellulose 2022, 29, 967-983. 7. Qian YY, Kuang YD, Zhang YZ, et al. High-value utilization of pineapple leaf fibers towards high-performance electromagnetic shielding materials [J]. Materials Today Nano 2023, 29, 100393. 8. Wei Y, Xiang LJ, Ou HJ, Li F, Zhang YZ, et al. MXene-Based Conductive Organohydrogels with LongTerm Environmental Stability and Multifunctionality [J]. Adv. Funct. Mater 2020, 30(48), 2005135-2005145. 9. Zhu PH, Liu Y, Fang ZQ, Kuang YD, Zhang YZ, et al. Flexible and Highly Sensitive Humidity Sensor Based on Cellulose Nanofibers and Carbon Nanotube Composite Film [J]. Langmuir 2019, 35, 4834-4842. |