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结构化学
结构化学

吴新涛

月刊

0254-5861

jghx@fjirsm.ac.cn

0591-83704886,83704896

350002

福建省福州市杨桥西路155号

结构化学/Journal Chinese Journal of Structural ChemistryCSCD北大核心CSTPCDSCI
查看更多>>本刊是中国科学院主管,中国化学会、中国科学院福建物质结构研究所主办的学术性期刊。2006年改为纯英文版“Chinese Journal of Structural Chiemistry”。主要报道晶体学,量子化学,药物、材料和催化剂等领域物质性能与结构关系的文章。报道的内容涉及有机化学、无机化学、合成化学、结构化学、材料科学、药物化学、晶体学、理论化学等学科中的微观物质结构与性能关系的研究成果或阶段性成果。与此同时本刊也报道用谱学等物理方法解析物质结构、阐述物质结构与性能关系的论文。《结构化学》是中国自然科学核心期刊,中国科技论文引文数据库来源及统计源期刊。
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    Tuning lanthanide luminescence from bipyridine-bis(oxazoline/thiazoline)tetradentate ligands

    Hao JiangYuan-Yuan HeHai-Chao LiangMeng-Jia Shang...
    46-51页
    查看更多>>摘要:Organic ligands play a pivotal role in lanthanide luminescence by acting as sensitizers for energy absorption and transfer,a phenomenon known as the fluorescence antenna effect.Herein,we introduce two tetradentate nitrogen ligands renowned for their efficient sensitization of lanthanide luminescence,with their luminous efficacy finely adjustable through subtle modifications to their structure.Through the synthesis of four Eu(Ⅲ)/Tb(Ⅲ)mono-nuclear complexes via the complexation of ligands 6,6'-bis(4,5-dihydrooxazol-2-yl)-2,2'-bipyridine(bpybox,L1)and 6,6'-bis(4,5-dihydrothiazol-2-yl)-2,2'-bipyridine(thio-bpybox,L2)with europium/terbium trifluorosulfonate,structural analysis reveals that the lanthanide ion coordinates with eight nitrogen atoms from two ligands and one oxygen atom from trifluorosulfonate.Among them,two Eu(Ⅲ)complexes([Eu(L1)2(SO3CF3)](SO3CF3)2 EuL1 and[Eu(L2)2(SO3CF3)](SO3CF3)2 EuL2)and one Tb(Ⅲ)complex([Tb(L1)2(SO3CF3)](SO3CF3)2 TbL1)exhibit lumi-nosity,displaying characteristic lanthanide metal ion luminescence characterized by high fluorescence quantum yields and prolonged excited state lifetimes.In contrast,TbL2([Tb(L2)2(SO3CF3)](SO3CF3)2)is non-luminous,with the sole structural distinction being the substitution of oxygen atoms with sulfur atoms within the ligand.This minor alteration significantly impacts the triplet(3T)state energy level of the ligands,thereby influencing their sensitizing effect on Tb(Ⅲ)luminescence.These findings underscore the remarkable efficiency of bpybox-type ligands as sensitizers for Ln(Ⅲ)luminescence,with their structural versatility enabling effective modula-tion of luminous capacities and efficiency.

    Rigid-flexible-ligand-ornamented lanthanide-incorporated selenotungstates and photoluminescence properties

    Tiantian GongYanan ChenShuo WangMiao Wang...
    52-59页
    查看更多>>摘要:Currently,organic-inorganic hybrid lanthanide-incorporated polyoxometalates(POMs)have emerged as a prominent research area.Herein,we employ a simple raw material assembly method to synthesize two neoteric mixed-organic-ligand-ornamented lanthanide(Ln)incorporated selenotungstates[H2N(CH3)2]16Na2[Ln4(H2O)6-(HPZDA)2(HFMA)2W8O21][B-α-SeW9O33]4·29H2O(Ln=Sm3+(1),La3+(2);H2PZDA=2,3-pyrazine dicarboxylic acid,H2FMA=fumaric acid).1 and 2 are isomorphic with the polyanions constructed from four trivacant Keggin[B-α-SeW9O33]8-({SeW9})segments and a rigid-flexible-ligand-ornamented dodeca-nuclear W-Ln heterometallic[Ln4(H2O)6(HPZDA)2(HFMA)2W8O21]14+cluster.Moreover,the solid-state fluorescence spectrum of 1 at room temperature mainly exhibits the characteristic emission peak of Sm3+cations.Additionally,energy transfer from{SeW9}to Sm3+ions in 1 has been demonstrated by time-resolved spectroscopy.This work presents a feasible dual-ligand synergistic strategy for constructing novel POM derivatives and POM-based fluorescent materials.

    Metallic nanoparticles for visual sensing:Design,mechanism,and application

    Bharathi NatarajanPalanisamy KannanLonghua Guo
    60-76页
    查看更多>>摘要:Fascinating physico-chemical features of functionalized metallic nanoparticles(MNPs),which offer a high surface-to-volume ratio,biocompatibility,and flexible functionalities,are considered as potential building blocks in functionalized nano/biointerface,facilitating stable biosensing detection response towards various biological analytes.MNPs-based colorimetric biosensors have received enormous attention in chemistry,biology,and medicine owing to their simplicity,practicality,low-cost,high stability,and selectivity.Principally,the colori-metric biosensing is low-cost;it does not require advanced analytical instruments because the change in color of nanoparticle dispersion can be directly read out via the naked-eye,which is indeed used for on-field analysis and point-of-care(POC)analyses.Notably,MNPs such as gold,silver,iron oxide,and cerium oxide have been used for the simple and facile colorimetric detection of biologically important analytes via changes in various colors.In this review,the biosensing mechanism is based on the change in colors of MNPs toward the detection of clinically important biomolecules(glucose,ochratoxin A(OTA),etc.),deoxyribonucleic acid(DNA),prostate-specific an-tigen(PSA),α-fetoprotein(AFP),lipopolysaccharide(LPS),carcinoembryonic antigen(CEA),and proteins in various real samples.This promising discipline,at the interface of nanomaterials and biosciences,offers extensive projections for interdisciplinary researchers that comprise nanomaterial preparation,bio-element functionaliza-tion,and targeted detection in clinical diagnostics.The potential approaches for new colorimetric substrate design,important biosensing characteristics,challenges,and future opportunities for colorimetric biosensing strategies are also described.

    Nitrate-bridged hybrid organic-inorganic perovskites

    Yan ChengHai-Quan YaoYa-Di ZhangChao Shi...
    77-83页
    查看更多>>摘要:Hybrid organic-inorganic perovskites(HOIP)have attracted increasing interest in the last decade.While current research in this field focuses on metal halide HOIPs because of their excellent photovoltaic and optoelectronic properties,other hybrid perovskites are also being designed and developed for other properties.Among them,HOIPs bridged by nitrate show structural diversity and a remarkable range of physical properties.In this mini review,we summarize their structural features and rich physical properties including structural phase transitions,ferroelectric,piezoelectric,piezomagnetic and photoluminescencent properties.In addition,the challenges for improving the physical properties achieved by such materials and the space for further development of such materials are also discussed.