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基于稀土金属离子配位超分子聚合物的荧光微囊 被引量:2
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作者 王家锐 杨飏 +1 位作者 阎云 黄建滨 《物理化学学报》 SCIE CAS CSCD 北大核心 2012年第10期2291-2297,共7页
以基于金属配位作用的聚合物材料Eu-L2EO4为带负电的聚电解质,利用静电相互作用通过层层组装的方法制备了自发光的聚合物荧光微囊.该微囊壁孔径很小,对小分子负载具有良好的封闭性,且在盐浓度高达500mmol·L-1时依然稳定,表现出良... 以基于金属配位作用的聚合物材料Eu-L2EO4为带负电的聚电解质,利用静电相互作用通过层层组装的方法制备了自发光的聚合物荧光微囊.该微囊壁孔径很小,对小分子负载具有良好的封闭性,且在盐浓度高达500mmol·L-1时依然稳定,表现出良好的耐盐性质.以Eu3+-Tb3+混合离子取代Eu3+,可以制备多色荧光微囊. 展开更多
关键词 层层组装 荧光微囊 金属配位聚合物超分子
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Conformational changes in photosynthetic pigment proteins on thylakoid membranes can lead to fast non-photochemical quenching in cyanobacteria
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作者 WANG ZhiCong DONG Jing LI DunHai 《Science China(Life Sciences)》 SCIE CAS 2012年第8期726-734,共9页
A high non-photochemical quenching(NPQ) appeared below the phase transition temperature when Microcystis aeruginosa PCC7806 cells were exposed to saturated light for a short time.This suggested that a component of NPQ... A high non-photochemical quenching(NPQ) appeared below the phase transition temperature when Microcystis aeruginosa PCC7806 cells were exposed to saturated light for a short time.This suggested that a component of NPQ,independent from state transition or photo-inhibition,had been generated in the PSII complex;this was a fast component responding to high intensity light.Glutaraldehyde(GA),commonly used to stabilize membrane protein conformations,resulted in more energy transfer to PSII reaction centers,affecting the energy absorption and dissipation process rather than the transfer process of phycobilisome(PBS).In comparison experiments with and without GA,the rapid light curves(RLCs) and fluorescence induction dynamics of the fast phase showed that excess excitation energy was dissipated by conformational change in the photosynthetic pigment proteins on the thylakoid membrane(PPPTM).Based on deconvolution of NPQ relaxation kinetics,we concluded that the fast quenching component(NPQ f) was closely related to PPPTM conformational change,as it accounted for as much as 39.42% of the total NPQ.We hypothesize therefore,that NPQ f induced by PPPTM conformation is an important adaptation mechanism for Microcystis blooms under high-intensity light during summer and autumn. 展开更多
关键词 chlorophyll fluorescence PHOTOPROTECTION Microcystis aeruginosa non-photochemical quenching thylakoid membrane proteins
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