在Nature Communication,Environmental Science & Technology,Water Research等环境领域顶刊发表学术论文70余篇,其中第一/通讯作者40余篇,ESI高被引论文3篇,授权发明专利10余项、软件著作权1项,参编外文专著2部。
l代表性第一/通讯作者论文: 1.Caihong Liu*et al.; Architecting asymmetrical Janus membrane for robust membrane distillation desalination with enhanced anti-fouling performance,Water Research, 289 (2026) 124883 2.Caihong Liu*et al.; Maximizing membrane antifouling potential: The impact of fluoride positioning in multifunctional designs,Water Research, 281 (2025) 123565 3.Caihong Liu*et al.; Enhancing rejection of short-chain per and polyfluoroalkyl substances by tailoring the surface charge of nanofiltration membranes,Water Research, 2025, 272: 122931-122941 4.Caihong Liu*et al.; Electroless deposition of copper nanoparticles integrates polydopamine coating on reverse osmosis membranes for efficient biofouling mitigation,Water Research, 2022, 217: 118375 5.Caihong Liu*et al.; Constructing zwitterionic polymer brush layer to enhance gravity-driven membrane performance by governing biofilm formation,Water Research, 2020, 168: 115181 6.Caihong Liuet al.; Antifouling thin-film composite membranes by controlled architecture of zwitterionic polymer brush layer,Environmental Science & Technology, 2017, 51(4): 2161-2169 7.Caihong Liuet al.; Mitigation of biofilm development on thin-film composite membranes functionalized with zwitterionic polymers and silver nanoparticles,Environmental Science & Technology, 2017, 51(1): 182-191 l授权发明专利: 1.一种高盐高有机物废水资源化与零排放的处理系统. ZL201910735886.7 2.一种高盐高有机物工业废水的生物处理系统及方法. ZL201910567478.5 3.一种聚合氯化铝强化型好氧颗粒污染膜生物反应器的一体化污水处理装置. ZL201811255480.0 4.聚合氯化铝强化型好氧颗粒污泥斜管反应器. ZL202021986344.1 5.基于流体流动诱导催化剂位置选择性负载的方法及系统. ZL202411533970.8 6.用于从水中去除PFAS的可持续电化学过滤系统和方法. ZL202111332734.6 7.一种磁性吸附材料及其制备和处理含铊废水的方法. ZL201811439179.5 |