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Fire Intumescent,High-Temperature Resistant,Mechanically Flexible Graphene Oxide Network for Exceptional Fire Shielding and Ultra-Fast Fire Warning 被引量:5
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作者 cheng-fei cao Bin Yu +9 位作者 Zuan-Yu Chen Yong-Xiang Qu Yu-Tong Li Yong-Qian Shi Zhe-Wen Ma Feng-Na Sun Qing-Hua Pan Long-Cheng Tang Pingan Song Hao Wang 《Nano-Micro Letters》 SCIE EI CAS CSCD 2022年第6期81-98,共18页
Smart fire alarm sensor(FAS)materials with mechanically robust,excellent flame retardancy as well as ultra-sensitive temperature-responsive capability are highly attractive platforms for fire safety application.Howeve... Smart fire alarm sensor(FAS)materials with mechanically robust,excellent flame retardancy as well as ultra-sensitive temperature-responsive capability are highly attractive platforms for fire safety application.However,most reported FAS materials can hardly provide sensitive,continuous and reliable alarm signal output due to their undesirable temperature-responsive,flame-resistant and mechanical performances.To overcome these hurdles,herein,we utilize the multi-amino molecule,named HCPA,that can serve as triple-roles including cross-linker,fire retardant and reducing agent for decorating graphene oxide(GO)sheets and obtaining the GO/HCPA hybrid networks.Benefiting from the formation of multi-interactions in hybrid network,the optimized GO/HCPA network exhibits significant increment in mechanical strength,e.g.,tensile strength and toughness increase of~2.3and~5.7 times,respectively,compared to the control one.More importantly,based on P and N doping and promoting thermal reduction effect on GO network,the excellent flame retardancy(withstanding~1200℃flame attack),ultra-fast fire alarm response time(~0.6 s)and ultra-long alarming period(>600 s)are obtained,representing the best comprehensive performance of GO-based FAS counterparts.Furthermore,based on GO/HCPA network,the fireproof coating is constructed and applied in polymer foam and exhibited exceptional fire shielding performance.This work provides a new idea for designing and fabricating desirable FAS materials and fireproof coatings. 展开更多
关键词 Graphene oxide Multi-amino molecule Flame resistance Fire intumescent effect Ultra-fast fire warning
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热电材料与热电池在火灾预警中的应用
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作者 丁招福 杜春雨 +4 位作者 龙武剑 曹承飞 梁丽荣 汤龙程 陈光明 《Science Bulletin》 SCIE EI CAS CSCD 2023年第24期3261-3277,M0006,共18页
火灾预警对于人身安全和资产保护至关重要.热电材料和热电池能够利用火灾前期的热量,将其有效转变为电能,从而实现火灾发生之前的有效预警,是近年来新出现的潜在前沿热点之一.本文首先从电子热电(空穴/电子热扩散)、离子热扩散(Soret效... 火灾预警对于人身安全和资产保护至关重要.热电材料和热电池能够利用火灾前期的热量,将其有效转变为电能,从而实现火灾发生之前的有效预警,是近年来新出现的潜在前沿热点之一.本文首先从电子热电(空穴/电子热扩散)、离子热扩散(Soret效应)和热电池(电极表面氧化还原反应)三个方面介绍了热-电能量转换的机理,然后简要概述了一维纤维及其热电器件、二维膜及其热电器件和三维块体及其热电器件的主要研究进展,之后重点论述了近年来热电材料和热电池在火宅预警应用的具体典型实例,最后对该领域的研究进展进行总结,并提出了一些对未来研究的观点和建议. 展开更多
关键词 THERMOELECTRICS Thermocell Fire warning SELF-POWERED
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Silicone/graphene oxide co-cross-linked aerogels with wide-temperature mechanical flexibility,super-hydrophobicity and flame resistance for exceptional thermal insulation and oil/water separation 被引量:2
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作者 Zhao-Hui Zhang Zuan-Yu Chen +9 位作者 Yi-Hao Tang Yu-Tong Li Dequan Ma Guo-Dong Zhang Rabah Boukherroub cheng-fei cao Li-Xiu Gong Pingan Song Kun cao Long-Cheng Tang 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2022年第19期131-142,共12页
Development of multifunctional and high-performance silicone aerogel is highly required for various promising applications.However,unstable cross-linking structure and poor thermal stability of silicone network as wel... Development of multifunctional and high-performance silicone aerogel is highly required for various promising applications.However,unstable cross-linking structure and poor thermal stability of silicone network as well as complicated processing restrict the practical use significantly.Herein,we report a facile and versatile ambient drying strategy to fabricate lightweight,wide-temperature flexible,super-hydrophobic and flame retardant silicone composite aerogels modified with low-content functionalized graphene oxide(FGO).After optimizing silane molecules,incorporation ofγ-aminopropyltriethoxysilane functionalization is found to promote the dispersion stability of GO during the hydrolysis-polymerization process and thus produce the formation of unique strip-like co-cross-linked network.Consequently,the aerogels containing∼2.0 wt%FGO not only possess good cyclic compressive stability under strain of 70%for 100 cycles and outstanding mechanical reliability in wide temperature range(from liquid nitrogen to 350℃),but also display excellent flame resistance and super-hydrophobicity.Further,the optimized silicone/FGO aerogels display exceptional thermal insulating performance superior to pure aerogel and hydrocarbon polymer foams,and they also show efficient oil absorption and separation capacity for var-ious solvents and oil from water.Clearly,this work provides a new route for the rational design and development of advanced silicone composite aerogels for multifunctional applications. 展开更多
关键词 Silicone composite aerogel Functionalized graphene oxide Mechanical robustness Flame resistance SUPER-HYDROPHOBICITY
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Temperature-induced resistance transition behaviors of melamine sponge composites wrapped with different graphene oxide derivatives 被引量:1
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作者 cheng-fei cao Wen-Jun Liu +12 位作者 Hui Xu Ke-Xin Yu Li-Xiu Gong Bi-Fan Guo Yu-Tong Li Xiao-Lan Feng Ling-Yu Lv Hong-Tao Pan Li Zhao Jia-Yun Li Jie-Feng Gao Guo-Dong Zhang Long-Cheng Tang 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2021年第26期194-204,共11页
Temperature-re s ponsive resistance transition behaviors of the melamine sponges wrapped with different graphene oxide derivatives(i.e.nanoribbon,wide-ribbon and sheet)were investigated.Melamine sponge composites coat... Temperature-re s ponsive resistance transition behaviors of the melamine sponges wrapped with different graphene oxide derivatives(i.e.nanoribbon,wide-ribbon and sheet)were investigated.Melamine sponge composites coated by three types of GO derivatives were prepared by a simple dip-coating approach.All these composites show good mechanical flexibility and reliability(almost unchanged compressive stress at 70%strain after 100 cycles),high hydrophobicity(water contact angle>120°),excellent flame resistance(self-extinguishing)and structural stability even after burning,which was used to construct the resistance-based fire alarm/warning sensor.Notably,the different resistance response behaviors of such sensors are strongly dependent on the GO size and network formed on the MF skeleton surface.Typically,at a fixed high temperature of~350℃,the three fire alarm sensors show different response time(to trigger the alarm light)of 6.3,8.4 and 11.1 s for nanoribbon,wide-ribbon and sheet at the same concentration,respectively.The structural observation and chemical analysis demonstrated that the discrepancy of temperature-responsive resistance transition behaviors of various GO derivatives was strongly determined by their different thermal reduction degrees during the high-tempe rature or flame treating process.This work offers a design and development for construction of smart fire alarm device for potential fire prevention and safety applications. 展开更多
关键词 Graphene oxide derivatives Fire warning response Structure and morphology Thermal reduction Temperature-responsive resistance transition
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