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A dual-signal sensor for the analysis of parathion-methyl using silver nanoparticles modified with graphitic carbon nitride 被引量:1
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作者 Yuan Li Mengqi Wan +2 位作者 Guosheng Yan Ping Qiu Xiaolei Wang 《Journal of Pharmaceutical Analysis》 SCIE CAS CSCD 2021年第2期183-190,共8页
A highly sensitive and selective method was developed for both UVevis spectrophotometric and fluorimetric determination of organophosphorus pesticides(OPs). This method used silver nanoparticles(AgNPs) modified with g... A highly sensitive and selective method was developed for both UVevis spectrophotometric and fluorimetric determination of organophosphorus pesticides(OPs). This method used silver nanoparticles(AgNPs) modified with graphitic carbon nitride(g-C_3N_4). The AgNPs reduced the fluorescence intensity of g-C_3N_4. Acetylthiocholine(ATCh) could be catalytically hydrolyzed by acetylcholinesterase(AChE) to form thiocholine, which induces aggregation of the AgNPs. This aggregation led to the recovery of the blue fluorescence of g-C_3N_4, with excitation/emission peaks at 310/460 nm. This fluorescence intensity could be reduced again in the presence of OPs because of the inhibitory effect of OPs on the activity of AChE. The degree of reduction was found to be proportional to the concentration of OPs, and the limit of fluorometric detection was 0.0324 mg/L(S/N=3). In addition, the absorption of the g-C_3N_4/AgNPs at 390 nm decreased because of the aggregation of the AgNPs, but was recovered in presence of OPs because of the inhibition of enzyme activity by OPs. This method was successfully applied to the analysis of parathion-methyl in real samples. 展开更多
关键词 Organophosphorus pesticides Dual-signal g-C_3N_4/AgNPs Fluorescence uvevis spectrophotometry
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New insights in nano-copper chromite catalyzing ultrafine AP:Evaluation of dispersity and mixing uniformity
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作者 Yong Kou Peng Luo +8 位作者 Lei Xiao Yanping Xin Guangpu Zhang Yubing Hu Junqing Yang Hongxu Gao Fengqi Zhao Wei Jiang Gazi Hao 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第2期120-133,共14页
Improving the application of nanomaterials has always been a research hotspot in the field of energetic materials(EMs)due to their obvious catalytic effect on the EMs,especially the uniformly dispersed nanomaterials.H... Improving the application of nanomaterials has always been a research hotspot in the field of energetic materials(EMs)due to their obvious catalytic effect on the EMs,especially the uniformly dispersed nanomaterials.However,few studies have reported the dispersion of nanomaterials.In this study,the dispersity and mixing uniformity of nano-CuCr_(2)O_(4)was evaluated based on the difference of solid UV light absorption between the nano-catalytic materials and EMs.The nano-CuCr_(2)O_(4)/ultrafine AP composites with different dispersity of nano-CuCr_(2)O_(4)were prepared by manual grinding and mechanical grinding with different grinding strength and griding time.And then,the absorbance of different samples at 212 nm was obtained by solid UV testing due to the high repeatability of the absorbance at 210-214 nm for three parallel experiments,and the dispersity of different samples was calculated through the established difference equation.Furthermore,the samples were characterized by XRD,IR,SEM,EDS,DSC and TG-MS,which confirmed that different mixing methods did not change the structure of the samples(XRD and IR),and the mixing uniformity improved with the increase of grinding strength and grinding time(SEM and EDS).The scientificity and feasibility of the difference equation were further verified by DSC.The dispersity of nano-CuCr_(2)O_(4)exhibits a positive intrinsic relationship with its catalytic performance,and the uniformly dispersed nano-CuCr_(2)O_(4)significantly reduces the thermal decomposition temperature of ultrafine AP from 367.7 to 338.8℃.The TG-MS patterns show that the dispersed nano-CuCr_(2)O_(4)advanced the thermal decomposition process of ultrafine AP by about 700 s,especially in the high temperature decomposition stage,and the more concentrated energy release characteristic is beneficial to further enhance the energy performance of AP-based propellants.The above conclusions show that the evaluation method of dispersity based on solid UV curves could provide new ideas for the dispersity characterization of nano-catalytic materials in EMs,which is expected to be widely used in the field of EMs. 展开更多
关键词 Nano-CuCr_(2)O_(4) Ultrafine AP Dispersity uvevis diffuse reflectance spectroscopy Thermal decomposition
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