(1) 孙东平, 黄洋(第二主编). 碳中和技术与绿色发展, 科学出版社(北京), ISBN 978-7-03-075015-0, 2023.
(2) 孙东平, 黄洋, 陈春涛, 陈啸, 胡颖, 孙汴京. 细菌纤维素微纳尺度的组装调控研究及其在生物医用敷料方面的应用. 江苏省复合材料科技进步奖(二等奖), 2016.12.
(3) Sha Yin, Yang Huang*(并列一作), Yihong Liu, Long Cheng, Ming Chen, Yifan Xu, Farzad Seidi, Huining Xiao*. Advanced composite solid electrolyte architecture constructed with amino-modified cellulose and carbon nitride via biosynthetic avenue. Advanced Functional Materials, 2024, 2314976.
(4) Long Cheng, Yang Huang*(并列一作), Sha Yin, Ming Chen, Farzad Seidi, Chao Deng, Huining Xiao*. A vapor-assisted construction of 3D highly porous boron nitride for anchoring and catalyzing polysulfides in lithium-sulfur batteries. Chemical Engineering Journal, 2024, Accepted.
(5) Long Cheng, Yang Huang*(并列一作), Sha Yin, Ming Chen, Yihong Liu, Yidan Zhang, Farzad Seidi, Zixia Lin, Huining Xiao*. Recent advances in cellulosic materials for aqueous zinc-ion batteries: An overview. Carbohydrate Polymers, 2023, 316: 121075.
(6) Sha Yin, Yang Huang*(并列一作), Jingquan Han, Yige Wang, Yifan Xu, Farzad Seidi, Huining Xiao*. Cellulosic all-solid-state electrolyte for lithium batteries fabricated via bio-synthetic avenue. Composites Part B, 2023, 254: 110566.
(7) Ming Chen, Dongxue Liu, Liucheng Meng, Ying Zhao, Jiaqi Xu, Sha Yin, Yige Wang, Yang Huang*. Inexhaustible natural celluloses in advanced Li–S batteries: a review. Journal of Materials Chemistry C, 2023, 11: 6819.
(8) Xinyi Li, Xuguang Zhang, Yifa Xu, Yige Wang, Yang Huang*, Mengtao Ma. Metallic and dimensional optimization of metal-organic frameworks for high-performance lithium-sulfur batteries. Chemistry - A European Journal, DOI: 10.1002/chem.202300407.
(9) Yang Huang, Aming Xie, Farzad Seidi, Wenyou Zhu, Hong Li, Sha Yin, Xiao Xu, Huining Xiao*. Core-shell heterostructured nanofibers consisting of Fe7S8 nanoparticlesembedded into S-doped carbon nanoshells for superior electromagnetic wave absorption. Chemical Engineering Journal, 2021, 423: 130307.
(10) Sha Yin, Yang Huang*(并列一作), Chao Deng, Yue Jiao, Weibing Wu, Farzad Seidi, Huining Xiao*.Hierarchically porous biochar derived from orthometric integration of wooden and bacterial celluloses for high-performance electromagnetic wave absorption. Composites Science and Technology, 2022, 218: 109184.
(11) Sha Yin, Yang Huang*(并列一作), Yu Wang, Yuqing Wang, Huining Xiao*. Tough and flexible poly(dimethylsiloxane) elastomerreinforced by conductive bacterial cellulose frameworksfor high-performance microwave absorber. Cellulose, 2022, 29: 259-272.
(12) Yang Huang, Xiangzhou Huang, Mengtao Ma, Chenyao Hu, Farzad Seidi, Sha Yin, Huining Xiao*. Recent advances on the bacterial cellulose-derived carbon aerogels. Journal of Materials Chemistry C, 2021, 9: 818.
(13) Yang Huang, Xinyi Li, Xiao Xu, Feng Wei, Ying Wang, Mengtao Ma, Yu Wang, Dongping Sun*. Green and up-scalable fabrication of superior anodes for lithium storagebased on biomass bacterial cellulose. Advanced Powder Technology, 2021, 32: 2484-2492.
(14) Yang Huang, Kaiyuan Tang, Fanshu Yuan, Weiwei Zhang, Bengang Li, Farzad Seidi, Huining Xiao*, Dongping Sun*. N-doped porous carbon nanofibers fabricated by bacterial cellulose-directed templating growth of MOF crystals for efficient oxygen reduction reaction and sodium-ion storage. Carbon, 2020, 168: 12-21.
(15) Yang Huang,Andrea Buffa, Haiqiang Deng, Sujoy Sarkar, Yu Ouyang, Xinyan Jiao, Qingli Hao, Daniel Mandler*. Ultrafine Ni(OH)2 nanoplatelets grown on 3D graphene hydrogel fabricated by electrochemical exfoliation for high-performance battery-type asymmetric supercapacitor applications. Journal of Power Sources, 2019, 439: 227046.
(16) Yang Huang, Liang Wang, Lei Lu, Mengmeng Fan, Fanshu Yuan, Bianjing Sun, Jieshu Qian, Qingli Hao*, Dongping Sun*. Preparation of bacterial cellulose basednitrogen-doped carbon nanofibers and theirapplications in the oxygen reduction reactionand sodium–ion battery. New Journal of Chemistry, 2018, 42: 7407.
(17) Yang Huang, Zixia Lin, Mingbo Zheng, Tianhe Wang, Jiazhi Yang, Fanshu Yuan, Xiaoyu Lu, Lin Liu, Dongping Sun*. Amorphous Fe2O3 nanoshells coated on carbonized bacterial cellulose nanofibers as a flexible anode for high-performance lithium ion batteries. Journal of Power Sources, 2016, 307: 649-656.
(18) Yang Huang, Mingbo Zheng, Zixia Lin, Bin Zhao, Songtao Zhang, Jiazhi Yang, Chunlin Zhu, Heng Zhang, Dongping Sun*, Yi Shi. Flexible cathodes and multifunctional interlayers based on carbonized bacterial cellulose for high-performance lithium–sulfur batteries. Journal of Materials Chemistry A, 2015, 3: 10910.
(19) Yang Huang, Chunlin Zhu, Jiazhi Yang, Ying Nie, Chuntao Chen, Dongping Sun*. Recent advances in bacterial cellulose. Cellulose, 2014, 21: 1-30.
(20) Yang Huang, Tianhe Wang, Mingzhong Ji, Jiazhi Yang, Chunlin Zhu, Dongping Sun*. Simple preparation of carbonized bacterial cellulose–Pt composite as a high performance electrocatalyst for direct methanol fuel cells (DMFC). Materials Letters, 2014, 128: 93-96.
(21)黄洋, 尹纱, 肖惠宁, 胡辰尧. 基于木质纤维素与细菌纤维素的复合材料及其制备方法和应用, 国家发明专利, ZL202011321478.6, 2022年4月19日授权.
(22)黄洋, 肖惠宁, 葛颖, 黄湘舟, 李娉婷, 尹纱. 一种导电三元复合材料及其制备方法和应用. 国家发明专利, ZL202010376158.4, 2022年4月22日授权.
(23) 黄洋, 黄湘舟, 邓超, 尹纱, 胡辰尧, 肖惠宁. 一种细菌纤维素/非织造纤维复合面膜基布高效制备方法. 国家发明专利, ZL202011232942.4, 2022年6月3日授权.
(24) 黄洋, 孙瑞宁, 杨加志, 张衡, 陈春涛, 梁光芸, 顾焱. 一种基于氮掺杂碳化细菌纤维素的锂硫电池. 国家发明专利, ZL201611218937.1, 2019年6月21日授权.