蔡再生教授

蔡再生,1965.05出生。1994.04畢業(yè)于中國(guó)紡織大學(xué),獲工學(xué)博士學(xué)位,1994.05復(fù)旦大學(xué)高分子系博士后(1996.05復(fù)旦大學(xué)副教授資格),1996.06中國(guó)紡織大學(xué)(現(xiàn)東華大學(xué))副教授,2000.07起任東華大學(xué)(原中國(guó)紡織大學(xué))教授,2001.05起任博士生導(dǎo)師。美國(guó)北卡州立大學(xué) (North Carolina State University)博士后,美國(guó)加州大學(xué)(University of California, Davis)訪(fǎng)問(wèn)學(xué)者。
主要學(xué)術(shù)兼職和榮譽(yù):
兼任中紡學(xué)標(biāo)委會(huì)副主任,生態(tài)助劑標(biāo)委會(huì)主任;中針協(xié)技術(shù)委員會(huì)副主任、經(jīng)編協(xié)顧問(wèn),上海市紡織工程學(xué)會(huì)理事,全國(guó)十佳紡織面料設(shè)計(jì)師評(píng)選專(zhuān)家評(píng)委,《東華大學(xué)學(xué)報(bào)》、《產(chǎn)業(yè)用紡織品》、《國(guó)際紡織導(dǎo)報(bào)》編委會(huì)委員,《紡織導(dǎo)報(bào)》、《針織工業(yè)》專(zhuān)家委員,“十四五”部委級(jí)規(guī)劃教材專(zhuān)家評(píng)委。美國(guó)紡織化學(xué)師與印染師協(xié)會(huì)(AATCC)資深會(huì)士、英國(guó)染色師學(xué)會(huì) (SDC)會(huì)員。
榮膺上海市領(lǐng)軍人才(2021),中國(guó)紡織學(xué)術(shù)帶頭人(2015),江蘇省高層次創(chuàng)新創(chuàng)業(yè)人才(2007),湖州市南太湖特聘專(zhuān)家(2011),湖州市“南太湖精英計(jì)劃”創(chuàng)新領(lǐng)軍人才(2015)等;連年榮獲愛(ài)思維爾中國(guó)高被引學(xué)者,入選全球前2%頂尖科學(xué)家和終身科學(xué)影響力榜單。
榮獲全國(guó)寶鋼優(yōu)秀教師獎(jiǎng)(2013),上海市高校優(yōu)秀青年教師(1999),桑麻獎(jiǎng)教獎(jiǎng)(2007),中國(guó)紡織大學(xué)青年教師講課競(jìng)賽一等獎(jiǎng)(1998),中紡織工業(yè)協(xié)會(huì)教學(xué)成果一等獎(jiǎng)(2009),上海市教學(xué)成果一等獎(jiǎng)(2013),中國(guó)紡織工業(yè)協(xié)會(huì)優(yōu)秀教材(2006,2010),東華大學(xué)第十六屆化學(xué)節(jié)“教師風(fēng)尚獎(jiǎng)——擔(dān)當(dāng)奉獻(xiàn)”(2015),東華大學(xué)第十二屆化學(xué)節(jié)“教師風(fēng)尚獎(jiǎng)——嚴(yán)謹(jǐn)治學(xué)獎(jiǎng)”(2011),東華大學(xué)第十一屆化學(xué)節(jié)“教師風(fēng)尚獎(jiǎng)——最佳風(fēng)度獎(jiǎng)”(2010)。多次榮獲優(yōu)秀本科生、研究生畢業(yè)論文優(yōu)秀指導(dǎo)教師稱(chēng)號(hào)。
主要研究方向:
纖維改性與功能化、紡織品化學(xué)整理、綠色低碳染整與環(huán)境保護(hù)
主要研究經(jīng)歷與成果:
歷年來(lái)承擔(dān)包括國(guó)家基礎(chǔ)材料重點(diǎn)專(zhuān)項(xiàng)課題,國(guó)家自然科學(xué)基金(面上),國(guó)家科技支撐計(jì)劃、上海市引進(jìn)技術(shù)的吸收與創(chuàng)新計(jì)劃重點(diǎn)項(xiàng)目、教育部重點(diǎn)項(xiàng)目、教育部博士點(diǎn)基金(優(yōu)先發(fā)展類(lèi)、博導(dǎo)類(lèi))以及與德國(guó)巴斯夫、國(guó)際羊毛局、美國(guó)陶氏化學(xué)、美國(guó)棉花公司和美國(guó)寶潔公司等國(guó)際合作和企業(yè)合作項(xiàng)目等120多項(xiàng)。在EES,Adv. Funct. Mater., Mater. Today, Adv. Fiber Mater., Small, Chem. Eng. J., J. Hazard. Mater., Surf. Technol., ACS Sustainable Chem. Eng.等SCI源刊和國(guó)家核心刊物上發(fā)表論文400余篇,授權(quán)發(fā)明專(zhuān)利130余件、國(guó)際專(zhuān)利1件。
榮獲國(guó)家技術(shù)發(fā)明二等獎(jiǎng)2項(xiàng)(第三完成人),上海市技術(shù)發(fā)明一等獎(jiǎng)1項(xiàng)、二等獎(jiǎng)2項(xiàng)(第一完成人),中國(guó)紡織工業(yè)聯(lián)合會(huì)科技進(jìn)步一等獎(jiǎng)1項(xiàng)、二等獎(jiǎng)2項(xiàng)(第一完成人),教育部科技技術(shù)發(fā)明二等獎(jiǎng)1項(xiàng)(第一完成人),及其他省部級(jí)三大獎(jiǎng)近20項(xiàng),上海第三屆“東紡明珠”創(chuàng)新成就一等獎(jiǎng)(2012)。
國(guó)際交流與合作:
曾在美國(guó)北卡州立大學(xué) (North Carolina State University)博士后,在美國(guó)加州大學(xué)(University of California, Davis)做訪(fǎng)問(wèn)學(xué)者;應(yīng)邀在德國(guó)、意大利、法國(guó)等做學(xué)術(shù)交流和技術(shù)訪(fǎng)問(wèn)。
曾與Dow Chemical Company,Cotton Incorporated,Australian Wool Innovation, Limited, The Procter & Gamble Company, BASF Auxiliary Chemicals Company進(jìn)行國(guó)際合作。
教材與主要獎(jiǎng)勵(lì):
主編本科國(guó)家級(jí)和省部級(jí)規(guī)劃教材《纖維化學(xué)與物理》、《染整概論》、教學(xué)參考書(shū)《染整工藝原理》(第1分冊(cè)、第3分冊(cè)),研究生統(tǒng)編教材《染色物理化學(xué)》。
榮獲上海市高等教育教學(xué)成果一等獎(jiǎng)(2014),中國(guó)紡織工業(yè)聯(lián)合會(huì)教學(xué)成果一等獎(jiǎng)(2013)等;連續(xù)多次榮獲部委級(jí)優(yōu)秀教材獎(jiǎng)。
主講課程:
纖維物理(博士研究生課程),Textile Chemistry(留學(xué)生課程),染色物理化學(xué)(紡織化學(xué)與染整工程研究生課程),纖維化學(xué)與物理(輕化工程本科生課程)。
博士后和研究生招生信息:
歡迎感興趣的具有紡織化學(xué)與染整工程,化學(xué)、化工、材料、紡織等相關(guān)研究背景的博士生申請(qǐng)博士后研究職位,同時(shí)歡迎感興趣的具有相同背景的本科生和碩士生報(bào)考加入本課題組。
聯(lián)系電話(huà):67792609
EMAIL:zshcai@dhu.edu.cn
近5年承擔(dān)的部分科研項(xiàng)目:
2025 | 自適應(yīng)調(diào)溫涼感面料的開(kāi)發(fā) | 三立人(深圳)科技有限公司 |
2025 | 染色、洗呢水快速回用技術(shù) | 江陰笛科隆毛紡有限公司 |
2025 | 新型尼龍薄膜研發(fā)及在服飾面料中產(chǎn)業(yè)化應(yīng)用 | 浙江葉致紡織有限公司 |
2025 | 基于PCR技術(shù)的染整微生物群落調(diào)控與工藝優(yōu)化開(kāi)發(fā) | 寧波奇微醫(yī)療科技有限公司 |
2025 | 具有芬芳、冷熱自調(diào)節(jié)功能的裸感針織面料開(kāi)發(fā) | 江蘇泰慕士針紡科技股份有限公司 |
2024 | 涼爽服用紡織面料的開(kāi)發(fā) | 三立人(深圳)科技有限公司 |
2024 | 高性能校服面料的開(kāi)發(fā)技術(shù)與產(chǎn)業(yè)化 | 浙鵬實(shí)業(yè)集團(tuán)有限公司 |
2024 | 植物染料染色、抗菌工藝研究 | 江陰海瀾科技有限公司 |
2024 | 抗疲勞校服面料的開(kāi)發(fā)關(guān)鍵技術(shù) | 浙鵬實(shí)業(yè)集團(tuán)有限公司 |
2024 | 校服面料洗舊企業(yè)標(biāo)準(zhǔn) | 浙鵬實(shí)業(yè)集團(tuán)有限公司 |
2023 | 纖維素纖維環(huán)保型介質(zhì)染色技術(shù) | 浙江省紡織品進(jìn)出口集團(tuán)有限公司 |
2023 | 無(wú)氟防水劑的試制及其防水整理工藝開(kāi)發(fā) | 浙江省紡織品進(jìn)出口集團(tuán)有限公司 |
2023 | 通州灣現(xiàn)代紡織產(chǎn)業(yè)園產(chǎn)業(yè)研究2023 | 南通通州灣招商五局 |
2023 | 浙鵬實(shí)業(yè)-東華大學(xué)紡織聯(lián)合創(chuàng)新研發(fā)中心 | 浙鵬實(shí)業(yè)集團(tuán)有限公司 |
2022 | Porel纖維熱濕舒適面料低碳加工技術(shù)開(kāi)發(fā) | 南京東華纖維技術(shù)發(fā)展有限公司 |
2022 | 智能溫控助劑應(yīng)用開(kāi)發(fā)與應(yīng)用 | 南京東華纖維技術(shù)發(fā)展有限公司 |
2022 | TPU 纖維染色工藝開(kāi)發(fā) | 巴斯夫新材料有限公司 |
2022 | 提高家紡面料生態(tài)染整技術(shù)和產(chǎn)品功能性 |
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2021 | 耐洗阻燃滌/棉混紡面料開(kāi)發(fā)技術(shù) | 杭州航民美時(shí)達(dá)印染有限公司 |
2021 | 合成革用水性聚氨酯粘合劑的開(kāi)發(fā) | 麗水學(xué)院 |
2021 | 纖維素纖維棉面料改性染色新技術(shù)的研發(fā)及 | 獅丹努集團(tuán)股份有限公司 |
2021 | 高品質(zhì)針織物節(jié)水節(jié)能染整技術(shù) | 江蘇泰慕士針紡科技股份有限公司 |
2021 | 面向復(fù)雜含油污水的高效纖維分離膜結(jié)構(gòu)設(shè)計(jì)與性能提升機(jī)理 | 國(guó)家自然科學(xué)基金(面上)項(xiàng)目 |
近5年發(fā)表的部分論文:
2025 | Molecular-enabled lithium-locking for stable sorption-based atmospheric water harvesting, Energy & Environmental Science, 7, 18 (16), 8077-8087. |
2025 | Molecularly Copper-Coordinated Cellulose Heterogeneous Wettability Surface Induced Efficient Fog Harvesting, Advanced Fiber Materials, 10, 1-14. |
2025 | Bio-inspired Tough Metafiber with Hierarchical Photonic Structures for Durable Passive Radiative Thermal Management, Advanced Fiber Materials, 2, 7 (2) , 607-619. |
2025 | An asymmetric personal thermal management textile integrating multienergy-coupled heating with flame-retardant thermal-moisture regulation, Chemical Engineering Journal, 9, 523, 168289. |
2025 | Dual-strategy anti-fouling based on hydrogel-coated catalytic separation membrane material, Chemical Engineering Journal, 7, 521, 166483. |
2025 | Dual-wettability gradient fabric with grooved high-thermal-conductivity surface for textile-based fog harvesting, Chemical Engineering Journal, 1, 519, 165498. |
2025 | Thermally enhanced condensation and hydrophilicity-blocking strategy for textile-based fog harvesting, Chemical Engineering Journal, 3, 510, 161525. |
2025 | Fabric-based composite membrane for simultaneous emulsion separation and self-powered real-time monitoring, Journal of Hazardous Materials, 7, 496, 139261. |
2025 | Interface molecular mineralization enables green, scalable fabrication of MOF-fabric composites, Journal of Cleaner Production, 2, 496, 145094. |
2025 | Dyeing and life cycle assessment of Porel modified polyester, Journal of Cleaner Production, 9, 525, 146512. |
2025 | A smart gating microfiltration membrane to break aperture adaptability limit for industrial oily wastewater treatment, Journal of Membrane Science,1, 719, 123762. |
2025 | Dual-Functional Evaporator: Synergistic Seawater Purification via Photothermal Evaporation and Microplastic Adsorption, ACS Applied Materials & Interfaces, 7, 17 (30), 43740-43749. |
2025 | Janus Textile for Multifunctional Personal Thermal Management via Dual Photothermal–Electrothermal Conversion, ACS Applied Materials & Interfaces, 5, 17 (23) , 34569-34581. |
2025 | Facile fabrication of tear-film-inspired durable hyaluronic acid hydrogel films for persistent anti-fogging, Progress in Organic Coatings, 7, 208, 109537. |
2025 | A comprehensive, environmentally friendly, transparent cellulose hydrophilic anti-fog coating with excellent water resistance, coordinated multifunctionality and outstanding durability, Progress in Organic Coatings, 5, 206, 109369. |
2025 | Design of Janus fabric membranes with asymmetric wettability and controllable pore size for on-demand separation of oily wastewater, Journal of Environmental Chemical Engineering, 7, 13 (5), 118224. |
2025 | pH-responsive fiber membrane with high flux and photocatalytic performance for oily wastewater, Journal of Environmental Chemical Engineering, 1, 13 (1), 115322. |
2025 | Multi-scenario durable hydrophilic/hydrophobic poly (HEAA-co-BA-co-BPA) anti-fogging coating, Colloids and Surfaces A: Physicochemical and Engineering Aspects,4, 720, 137069. |
2024 | Superior mechanically orthogonal woven fabric membrane with tunable wettability for on-demand oil-water separation, Colloids and Surfaces A: Physicochemical and Engineering Aspects, 12, 708, 136005. |
2024 | Efficient cationization strategy for cotton fabric with excellent utilization of chemical reagent, Cellulose, 12, 32 (2), 1325-1338. |
2024 | Nanoscale Drag Reduction Effect Enables Efficient Fog Harvesting. Advanced Functional Materials. 2024:2411083. |
2024 | A Molecular Confine-Induced Charged Fiber for Fog Harvesting. Advanced Fiber Materials. 8,5:1-14. |
2024 | Fabrication of mechanically stable fabric-based hydrogel membranes based on dual network toughening strategy for high efficient oil–water emulsion separation. Separation and Purification Technology. 2025 2,19;354:128609. |
2024 | A High‐Performance Passive Radiative Cooling Metafabric with Janus Wettability and Thermal Conduction. Small. 10;20(43):2403751. |
2024 | Designed inorganics doped gel electrolyte with enhancing ion transfer and diffusion effects for flexible interdigitated supercapacitors. Journal of Power Sources. 10, 1;616:235139. |
2024 | Design fiber-based membrane with interfacial wettability rapidly regulated behavior by pH for oily wastewater high-efficient treatment. Progress in Organic Coatings. 4,1;189:108326. |
2024 | One-step preparation of green hydrophilic anti-fogging coating with excellent frost resistance. Progress in Organic Coatings. 2025 1, 1;198:108898. |
2024 | Ecofriendly Dyeing Strategy Based on Dyeing Kinetics and Thermodynamic Analysis for Melt-Spun Polyurethane Fibers. Langmuir. 10. 30. |
2024 | Diatoms Inspired Green Janus Fabric for Efficient Fog Harvesting. Advanced Sustainable Systems.:2400664. |
2024 | Research Progress and Development Trend of Textile Auxiliaries. Fibers and Polymers. 4,9:1-33. |
2024 | Study on the dyeing and moisture absorption and quick-drying performance of Porel spandex core-spun yarns. The Journal of The Textile Institute. 5,21:1-8. |
2024 | Optimisation of cationic dye dyeing process of Porel fabrics using response surface methodology. Coloration Technology. 4,26. |
2023 | Thermodynamically Induced Interfacial Condensation for Efficient Fog Harvesting, Small, 2304037 |
2023 | Fabrication of sandwich-structured infrared camouflaged and flexible anti-aging composite for thermal management, Ceramics International, 49,18,30304-30311 |
2023 | Facile fabrication of fabric-based membrane for adjustable oil-in-water emulsion separation, suspension filtration and dye removal, Separation and Purification Technology, 323,124467 |
2023 | Fabrication of Hydrophobic Poly(vinylidene fluoride) Membranes with Manipulated Micromorphology and Enhanced Strength, Langmuir ,39,25,8629-8637 |
2023 | Composite membranes with multifunctionalities for processing textile wastewater: Simultaneous oil/water separation and dye adsorption/degradation, Separation and Purification Technology, 320,124176 |
2023 | Different Dyeing Properties in Nonaqueous Dyeing Systems for Various Wool Fibers, Fibers and Polymers, 24, 2017–2025 |
2023 | Asymmetrical Emissivity and Wettability in Stitching Treble Weave Metafabric for Synchronous Personal Thermal-Moisture Management, Small, 19,29,2300297 |
2023 | One-way water transport and enhanced heating and cooling for cotton fabrics, Cellulose, 30,3351-3361 |
2022 | Sustainable silk dyeing in a silicon non-aqueous dyeing system with Reactive Red 195: salt-free and less alkali, Textile Research Journal, 92,23-24 |
2022 | Environment-Friendly High-Efficiency Continuous Pad Dyeing of Non-Shrinkable Wool Fabric by the Silicon Fixation Method without Auxiliary Chemicals, ACS Sustainable Chemistry & Engineering, 10,11,3557-3566 |
2022 | Preparation of cationic viscose and its salt-free dyeing using reactive dye, Coloration Technology, 138,4,378-387 |
2022 | Facile preparation of a high-transparency zwitterionic anti-fogging poly(SBMA-co-IA) coating with self-healing property, Progress in Organic Coatings, 165,106764 |
2022 | A Weaving Method to Prepare Double-Layer Janus Fabric for Oil-Water Separation, Fibers and Polymers, 23,3624-3637 |
2022 | New type of borneol-based fluorine-free superhydrophobic antibacterial polymeric coating, Designed Monomers and Polymers, 24,1, 147-157 |
2022 | A facile and green route to fabricate fiber-reinforced membrane for removing oil from water and extracting water under slick oil, Journal of Hazardous Materials, 416,125697 |
2021 | Facile preparation of a high-transparency anti-fogging/frost-resisting poly(AMPS-co-AA) coating with self-healing property, Progress in Organic Coatings, 151,106053 |
2022 | Cationic cotton modified by 3-chloro-2-hydroxypropyl trimethyl ammonium chloride for salt-free dyeing with high levelling performance, Cellulose, 29,633-646 |




