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原位成核生长法制备草莓状多级结构聚合物-有机硅复合微球被引量:3
《浙江理工大学学报(自然科学版)》2019年第2期174-181,共8页毛贻静 潘栋宇 张潇天 曹志海 戚栋明 孙阳艺 
国家自然科学基金青年基金项目(51703203);浙江省自然基金青年基金项目(LQ17E030004)
报道了通过原位成核生长法高效构筑草莓状多级结构聚合物-有机硅复合微球的方法。以聚乙烯基吡咯烷酮(PVP)为稳定剂制备得到的粒径均一的聚苯乙烯(PS)微球为中心核粒子,吸附自组装的十六烷基三甲基溴化铵(CTAB)胶束后,与水解过的硅烷偶...
关键词:原位成核生长 草莓状 有机硅 复合微球 动力学可控 
The effect of solvent in evaporation-induced self-assembly:A case study of benzene periodic mesoporous organosilica被引量:1
《Science China Chemistry》2011年第12期1920-1925,共6页WANG WenDong FAULKNER Daniel MOIR Jonathon OZIN Geoffrey A 
the Natural Sciences and Engineering Council (NSERC) of Canada for strong and sustained support of his research
Volatile organic solvents were considered to have little influence on the synthesis of mesostructured materials through evaporation-induced self-assembly(EISA),because upon evaporation they leave the sol and hence do ...
关键词:mesoporous materials periodic mesoporous organosilica evaporation induced self assembly thin films 
A facile "ship-in-a-bottle" approach to construct nanorattles based on upconverting lanthanide-doped fluorides被引量:3
《Nano Research》2016年第1期187-197,共11页Shan Lu Datao Tu Xingjun Li Renfu Li Xueyuan Chen 
This work is supported by the National Basic Research Program of China (No. 2014CB845605), Special Project of National Major Scientific Equipment Development of China (No. 2012YQ120060), the National Natural Science Foundation of China (Nos. 21201163, 21401196, U1305244, and 21325104), the CAS/SAFEA International Partnership Program for Creative Research Teams, and Strategic Priority Research Program of the CAS (No. XDA09030307).
Rattle structure is a topic of great interest in design and application of nano- materials due to the unique core@void@shell architecture and the integration of functions. Herein, we developed a novel "ship-in-a-bot...
关键词:nanorattle upconverting luminescence lanthanide-doped fluoride hollow mesoporous silica ORGANOSILICA drug release 
ZIF-8-NH2/有机硅杂化膜的制备及渗透汽化脱盐性能研究被引量:3
《无机材料学报》2020年第11期1239-1246,共8页朱春晖 徐荣 任秀秀 左士祥 龚耿浩 钟璟 
国家自然科学基金(21406018);江苏省高校自然科学研究重大项目(18KJA530001);江苏省绿色催化材料与技术重点实验室项目(BM2012110)。
石油和天然气开采、电厂脱硫及海水淡化等工业活动会产生大量的高含盐废水,有效处理这些高盐废水是实现液体零排放的关键。本研究以多孔α-Al2O3陶瓷膜为支撑体,将氨基功能化的沸石咪唑酯骨架结构材料(ZIF-8-NH2)填充到1,2-二(三乙氧基...
关键词: 有机硅 脱盐 渗透汽化 
Aminopropyl-containing ionic liquid based organosilica as a novel and efficient adsorbent for removal of crystal violet from wastewaters
《Chinese Journal of Chemical Engineering》2017年第9期1294-1302,共9页Frood Shojaeipoor Bakhshali Masoumi Mohammad Hossain Banakar Javad Rastegar 
Supported by the National Science Foundation of Iran
Herein a novel aminopropyl-containing ionic liquid based organosilica(ILOS-NH_2) is prepared, characterized and applied as effective adsorbent for removal of crystal violet(CV) dye from wastewater. The ILOS-NH2 materi...
关键词:Ionic liquid based organosilica Aminopropyl-functionalized Crystal violet(CV) Isotherm Kinetic 
多孔配位有机硅在膜分离领域中的应用被引量:1
《膜科学与技术》2023年第5期159-167,共9页谭先先 余亮 冯霄 王博 
国家自然科学基金项目(21971017,22171022,22308026)。
多孔配位有机硅材料是一类兼具Si-O-Si网络骨架和配位单元的复合材料,由于具有较高的孔隙率、孔径和孔分布易调节及孔道环境易修饰等优点,使其在重金属吸附和检测、自修复材料和膜分离技术等领域展现出了广阔的应用前景.本文主要介绍多...
关键词:配位单元 有机硅 膜分离技术 
A smart dual-responsive nanoplatform for delivery of prochloraz for the control of rice blast disease
《Advanced Agrochem》2024年第4期328-336,共9页Zhaoyang Zhang Donglin Li Chang Yu Jiaqing Li Dan Sun Jiayin Wang Mohamed Mmby Jianhong Li Hong You Shun He 
supported by the National Key Research and Development Program of China(2022YFA1207400);National Natural Science Foundation of China(32272579,31972302);Knowledge Innovation Program of Wuhan-Shuguang Project(2022020801020235);First Class Discipline Construction Funds of College of Plant Science and Technology,Huazhong Agricultural University(2022ZKPY005);Fundamental Research Funds for the Central Universities(2662022ZKYJ002 and 2662022YJ015).
Nano-controlled release formulations present a promising strategy to mitigate pesticide losses and enhance efficiency.In this study,a pH and GSH-responsive nanoplatform using mesoporous organosilica nanoparticles(MONs...
关键词:PROCHLORAZ Mesoporous organosilica nanoparticles Controlled-released formulation Magnaporthe oryzae Biological activity 
Growth of CeCo-MOF in dendritic mesoporous organosilica as highly efficient antioxidant for enhanced thermal stability of silicone rubber
《Chinese Chemical Letters》2025年第1期381-386,共6页Guizhi Zhu Junrui Tan Longfei Tan Qiong Wu Xiangling Ren Changhui Fu Zhihui Chen Xianwei Meng 
support from the Beijing Natural Science Foundation(No.JQ23035)。
High-efficient rubber antioxidants for enhanced heat resistance without compromising mechanical properties remain an enormous and long-term challenge for the rubber industry.Herein,we employed the in-situ growth of Ce...
关键词:Mesoporous organosilica nanoparticles Silicone rubber Metal-organic framework ANTIOXIDANTS Thermal stability Thermal oxidative degradation 
Soft Mesoporous Organosilica Nanoplatforms Improve Blood Circulation,Tumor Accumulation/Penetration,and Photodynamic Efficacy
《Nano-Micro Letters》2020年第10期205-223,共19页Xin Peng Kun Chen Wanhua Liu Xiongfeng Cao Mengru Wang Jun Tao Ying Tian Lei Bao Guangming Lu Zhaogang Teng 
supported by National Key Basic Research Program of China(973 Program),China(2014CB744504);the National Natural Science Foundation of China,China(81971675,21603106 and 81971681);the Natural Science Foundation of Jiangsu Province,China(BK20160017)。
To date,the ability of nanoplatforms to achieve excellent therapeutic responses is hindered by short blood circulation and limited tumor accumulation/penetration.Herein,a soft mesoporous organosilica nanoplatform modi...
关键词:Mesoporous organosilica Soft nanoplatform Long circulation Tumor accumulation Tumor penetration 
PEG交联有机硅/陶瓷杂化膜的制备及反渗透脱盐性能被引量:2
《无机材料学报》2018年第11期1154-1160,共7页徐荣 姜万 戚律 张琪 钟璟 
国家自然科学基金(21406018);常州市科技计划(CJ20179053);江苏省先进催化与绿色制造协同创新中心项目(常州大学);中国石油化工股份有限公司科技项目(216078)~~
采用聚乙二醇(PEG)和1,2-双(三乙氧基硅基)乙烷(BTESE)进行交联共聚,以多孔α-Al_2O_3陶瓷膜为支撑体制备了一系列PEG交联的有机硅杂化膜。通过原子力显微镜(AFM)、场发射扫描电镜(FE-SEM)、傅里叶红外光谱(FT-IR)、热重分析(TGA)和水...
关键词:聚乙二醇 有机硅 反渗透 脱盐 
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