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Anti-carbon deposition performance of twinned HZSM-5 encapsulated Ru in the toluene alkylation with methanol
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作者 guixian li Tao Tian +4 位作者 Hanxu li Jinlian li Tingna Shao Qi Zhang Peng Dong 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2023年第9期1-8,共8页
Toluene methylation with methanol to produce para-xylene has been extensively and intensively studied.However,the methanol-to-hydrocarbons(MTH)side reaction in this reaction is difficult to be inhibited,which will cau... Toluene methylation with methanol to produce para-xylene has been extensively and intensively studied.However,the methanol-to-hydrocarbons(MTH)side reaction in this reaction is difficult to be inhibited,which will cause a mass of carbon deposition and cover the catalyst surface,resulting in catalyst deactivation.Here,a dual-functional Ru@HZSM-5 catalyst with high para-selectivity and low carbon deposition was prepared by encapsulating Ru metal with HZSM-5.According to catalytic performance studies,the Ru@HZSM-5 catalyst produced xylene selectivity of 98%and para-xylene selectivity of 96%.Meanwhile,we find that carbon precursors(e.g.ethylene)were very little when Ru catalyst was used,but the results of HZSM-5 catalyst were completely opposite.Ru@HZSM-5 catalyst achieves a lower carbon deposition rate of only 6%of HZSM-5.The main possible reason for this is that the initial C-C bond between methanol and the olefin is difficult to form. 展开更多
关键词 Twinned HZSM-5 Encapsulated metal Shape-selective catalysis Anti-carbon deposition
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Bi^(3+)-activated dual-wavelength emitting phosphors toward effective optical thermometry
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作者 Yu Xue Yuqi Chen +6 位作者 guixian li Weixi Xia Qinan Mao Lang Pei Meijiao liu liang Chu Jiasong Zhong 《Chinese Chemical Letters》 SCIE CAS CSCD 2024年第3期486-492,共7页
Optical thermometry as an important local temperature-sensing technique,has received increasing attention in scientific and industrial areas.However,it is still a big challenge to develop luminescent materials with se... Optical thermometry as an important local temperature-sensing technique,has received increasing attention in scientific and industrial areas.However,it is still a big challenge to develop luminescent materials with self-activated dual-wavelength emissions toward high-sensitivity optical thermometers.Herein,a novel ratiometric thermometric strategy of Bi^(3+)-activated dual-wavelength emission band was realized in the same lattice position with two local electronic states of La_(3)Sb_(1-x)Ta_xO_(7):Bi^(3+)(0≤x≤1.0)materials based on the different temperature-dependent emission behaviors,benefiting from the highlysensitive and regulable emission to the coordination environment of Bi^(3+).The structural and spectral results demonstrate that the emission tremendously shifted from green to blue with 68 nm and the intensity was enhanced 2.6 times.Especially,the visual dual-wavelength emitting from two emission centers was presented by increasing the Ta^(5+)substitution concentration to 20%or 25%,mainly originating from the two local electronic states around the Bi^(3+)emission center.Significantly,the dual-wavelength with different thermal-quenching performance provided high-temperature sensitivity and good discrimination signals for optical thermometry in the range between 303 and 493 K.The maximum relative sensitivity reached 2.64%/K(La_(3)Sb_(0.8)Ta_(0.2)O_(7):0.04Bi^(3+)@383 K)and 1.91%/K(La_(3)Sb_(0.75)Ta_(0.25)O_(7):0.04Bi^(3+)@388 K).This work reveals a rational design strategy of different local electronic states around the singledoping multiple emission centers towards practical applications,such as luminescence thermometry and white LED lighting. 展开更多
关键词 Dual-wavelength emitting Cationic substitution Two local electronic states Optical thermometry Bi^(3+)-doped phosphor
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支架机械特征介导Yes相关蛋白信号调节干细胞生物行为的研究进展
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作者 利桂娴 蒋宏伟 杜宇 《中华口腔医学研究杂志(电子版)》 CAS 2022年第6期358-363,共6页
干细胞可感知局部微环境理化特征,传递并转导机械或化学信号以调控黏附、增殖、分化、代谢和免疫等生物行为。组织工程常通过设计人工支架模拟体内微环境机械特征对干细胞进行仿生调控,研究发现从细胞感知外界机械刺激到启动生物行为发... 干细胞可感知局部微环境理化特征,传递并转导机械或化学信号以调控黏附、增殖、分化、代谢和免疫等生物行为。组织工程常通过设计人工支架模拟体内微环境机械特征对干细胞进行仿生调控,研究发现从细胞感知外界机械刺激到启动生物行为发生变化的过程中,Yes相关蛋白(YAP)发挥了重要作用。本文旨在对支架机械特征的功能,及其介导YAP调控干细胞生物行为作用机制的研究进展进行综述。 展开更多
关键词 Yes相关蛋白 干细胞 支架 机械特征 生物行为
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