1、代表性項(xiàng)目
(1)國(guó)家自然科學(xué)基金面上項(xiàng)目(52170140). 主持
(2)四川省科技廳項(xiàng)目2項(xiàng):四川省重點(diǎn)研發(fā)項(xiàng)目(2025YFHZ0057)和四川省自然科學(xué)基金面上項(xiàng)目(2022NSFSC0389). 主持
(3)教育部博士學(xué)科點(diǎn)專(zhuān)項(xiàng)基金(20115121120005). 主持
(4)國(guó)家級(jí)大學(xué)生創(chuàng)新創(chuàng)業(yè)訓(xùn)練項(xiàng)目4項(xiàng)(202010615041、201810615049、201710615042、201610615006). 指導(dǎo)教師
(5)四川省大學(xué)生創(chuàng)新創(chuàng)業(yè)訓(xùn)練項(xiàng)目3項(xiàng)(S202310615180、201910615028、201510615084). 指導(dǎo)教師
(6)油氣藏地質(zhì)及開(kāi)發(fā)工程國(guó)家重點(diǎn)實(shí)驗(yàn)室開(kāi)放基金(PLN1111). 主持
(7)成都市科技局重點(diǎn)研發(fā)項(xiàng)目(2019-YF05-02393-SN). 主持
(8)四川省教育廳重點(diǎn)項(xiàng)目(15ZA0050). 主持
(9)西南石油大學(xué)中青年學(xué)術(shù)骨干,西南石油大學(xué).
2、代表性論文(*標(biāo)注為通訊作者,?標(biāo)注為共同第一作者)
(1)Wenhao Ren?, Chenfeng Ding?, Xuewei Fu*, Yun Huang*. Advanced gel polymer electrolytes for safe and durable lithium metal batteries: Challenges, strategies, and perspectives. Energy Storage Mater. 2021, 34: 515-535. (IF=20.4,高被引論文)
(2)Wenhao Ren?, Chen Luo?, Yun Huang*, et al. Hydroxypropylmethylcellulose: Functional material carrier for in-situ solid electrolyte engineering of advanced lithium metal batteries. Energy Storage Mater. 2023, 59: 102777. (IF=20.4)
(3)Jie Xiao,Yun Huang*, et al. Organic active materials in rechargeable batteries: Recent advances and prospects. Energy Storage Mater. 2023, 63: 103046. (IF=20.4)
(4)He Zheng, Yun Huang*, et al. Multi-protection of zinc anode via employing a natural additive in aqueous zinc ion batteries. Chem Eng J. 2023, 468: 143834. (IF=15.1,熱點(diǎn)論文、高被引論文)
(5)Zhongwei Zhao,Bingshu Guo*, Yun Huang*, et al. Selective Acid Etching Construction of High (101) Texture Zinc Metal Anodes for High-Performance Zinc Ion Batteries. Small, 2025: 2501569. (IF=13)
(5)Zhongwei Zhao,Yun Huang*, et al. Malic acid additive with a dual regulating mechanism for
high-performances aqueous zinc-ion batteries. Chem Eng J. 2024, 500:157431. (IF=15.1)
(6)Yanzhou Wang,Yun Huang*, et al. Study on the performance of electric double-layer capacitors based on lignocellulose gel polymer electrolytes with different pH values for Zn2+-lignocellulose coordination mechanism. Chem Eng J. 2025, 507: 160418. (IF=15.1)
(7)Xichang Wang,Yun Huang*, et al. Regulating chiral nematic liquid crystal of hydroxypropyl methylcellulose coating on separator for High-Safety Lithium-Ion batteries. Chem Eng J. 2024, 502: 158155.
(8)Saisai Li, Yun Huang*, et al. Stabilize lithium metal anode through in-situ forming a multi-component composite protective layer. Chem Eng J. 2021, 422: 129911. (IF=15.1)
(9)Saisai Li, Yun Huang*, et al. An optimized 3D polymer alloy interface for durability and safety for Li metal batteries. Chem Eng J. 2021, 420: 130002 . (IF=15.1)
(10)Xichang Wang?, Xi Xu?, Silin Pu?, Yun Huang*, et al.The chiral nematic liquid crystal of hydroxypropyl methylcellulose coated on separator: Break through safety of LIBs with high electrochemical performances. J. Colloid Interf. Sci. 2025, 682: 784–794. (IF=9.4)
(11)Saisai Li, Yun Huang*, et al. Stabilize lithium metal anode through constructing a lithiophilic viscoelastic interface based on hydroxypropyl methyl cellulose. Chem Eng J. 2020, 399: 125687. (IF=15.1)
(12)Changjian Zhang, Yun Huang*,et al. Regulating the local electronic structure to design a reliable dual-active site organic anode compatible with high-performance lithium-ion batteries. J. Mater. Chem. A 2025: DOI: 10.1039/d4ta06198e. (IF=10.8)
(13)Amin Song, Yun Huang*,et al. Novel lignocellulose based gel polymer electrolyte with higher comprehensive performances for rechargeable lithium-sulfur battery. J. Membr. Sci. 2018, 556: 203-213. (IF=9.5)
(14)Bo Liu,Yun Huang*,et al. A novel porous gel polymer electrolyte based on poly(acrylonitrile- polyhedral oligomeric silsesquioxane) with high performances for lithium-ion batteries. J. Membr. Sci. 2018, 545: 140-149. (IF=9.5)
(15)Bo Liu,Yun Huang*,et al. A novel non-woven fabric supported gel polymer electrolyte based on poly (methylmethacrylate-polyhedral oligomeric silsesquioxane) by phase inversion method for lithium ion batteries. J. Membr. Sci. 2018, 564: 62-72. (IF=9.5)
3、代表性專(zhuān)利(第一發(fā)明人)
(1)海綿基質(zhì)載體凝膠聚合物電解質(zhì)及其制備方法, ZL201410746874.1, 中國(guó)發(fā)明專(zhuān)利.
(2)植物纖維素膜基質(zhì)凝膠聚合物電解質(zhì)及其制備方法 ZL201410572986.X, 中國(guó)發(fā)明專(zhuān)利.
(3)自摻雜凝膠聚合物電解質(zhì)及其制備方法 ZL201410745583.0, 中國(guó)發(fā)明專(zhuān)利.
(4)具有親水性的丙烯酸酯類(lèi)吸附樹(shù)脂的制備及在處理苯酚廢水中的應(yīng)用 ZL201410798813.X,中國(guó)發(fā)明專(zhuān)利.
(5)一種自帶無(wú)機(jī)填料的凝膠聚合物電解質(zhì) ZL201410098645.3,中國(guó)發(fā)明專(zhuān)利.
(6)一種梯形醚鏈聚倍半硅氧烷聚合物及其制備方法 ZL201310536064.9,中國(guó)發(fā)明專(zhuān)利.
(7)一種P(AN-POSS)基多孔型凝膠聚合物電解質(zhì)及其制備方法 ZL201610998037.7,中國(guó)發(fā)明專(zhuān)利.
(8)木質(zhì)素基體凝膠聚合物電解質(zhì) ZL201510675989.0,中國(guó)發(fā)明專(zhuān)利.
(9)一種基于羥丙基甲基纖維素內(nèi)建準(zhǔn)固態(tài)電解質(zhì)的高安全性鋰離子電池 ZL20211 1420847.1,中國(guó)發(fā)明專(zhuān)利.
4、代表性獲獎(jiǎng)和著作
(1)2010年獲得陜西省科學(xué)技術(shù)獎(jiǎng)一等獎(jiǎng)
(2)2011年獲中國(guó)石油和化工自動(dòng)化應(yīng)用協(xié)會(huì)科技進(jìn)步獎(jiǎng)二等獎(jiǎng)
(3)2018年獲得四川省省級(jí)教學(xué)成果獎(jiǎng)三等獎(jiǎng)
(4)2016年獲第二屆“互聯(lián)網(wǎng)+”大學(xué)生創(chuàng)新創(chuàng)業(yè)大賽國(guó)家級(jí)銀獎(jiǎng)(指導(dǎo)教師)
(5)2018年第四屆“互聯(lián)網(wǎng)+”大學(xué)生創(chuàng)新創(chuàng)業(yè)大賽國(guó)家級(jí)銅獎(jiǎng)(指導(dǎo)教師)
(6)2016年第四屆中國(guó)大學(xué)生高分子材料創(chuàng)新創(chuàng)業(yè)大賽國(guó)家級(jí)三等獎(jiǎng)(指導(dǎo)教師)
(7)2016年第九屆全國(guó)大學(xué)生節(jié)能減排社會(huì)實(shí)踐與科技競(jìng)賽國(guó)家級(jí)三等獎(jiǎng)(指導(dǎo)教師)
(8)2016年第三屆“創(chuàng)青春”四川青年創(chuàng)新創(chuàng)業(yè)大賽省級(jí)金獎(jiǎng)(指導(dǎo)教師)
(9)2019年第五屆“互聯(lián)網(wǎng)+”大學(xué)生創(chuàng)新創(chuàng)業(yè)大賽省級(jí)銅獎(jiǎng)(指導(dǎo)教師)
(10)2017和2019年分別獲得第十四屆和第十五屆“挑戰(zhàn)杯”四川省大學(xué)生課外學(xué)術(shù)科技作品競(jìng)賽省級(jí)三等獎(jiǎng)(指導(dǎo)教師)
(11)2018和2020年本科學(xué)生發(fā)表論文入選教育部第十一屆和第十三屆大學(xué)生創(chuàng)新創(chuàng)業(yè)年會(huì)(指導(dǎo)教師)
(12)2023、2024年中國(guó)大學(xué)生機(jī)械工程創(chuàng)新創(chuàng)意大賽:“明石杯”微納傳感技術(shù)與智能應(yīng)用大賽國(guó)家級(jí)一等獎(jiǎng)(共同指導(dǎo)教師)
(13)2024年“創(chuàng)青春”川渝青年創(chuàng)新創(chuàng)業(yè)大賽省級(jí)銀獎(jiǎng)(指導(dǎo)教師)
(14)2024年“建行杯”四川省國(guó)際大學(xué)生創(chuàng)新大賽省級(jí)銀獎(jiǎng)(指導(dǎo)教師) |