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4篇 您的检索式:作者名="Zhibei Qu"
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1Phase transferring luminescent gold nanoclusters via single-stranded DNA显示文摘Atomically precise gold nanoclusters(Au NCs) are an emerging class of quantum-sized nanomaterials with discrete electronic energy levels, which has led to a range of attractive electronic and optical applications. Nevertheless, the lack of general methods to transfer Au NCs protected with hydrophobic ligands to an aqueous solution hampers their use in physiological settings. Here,we developed a single-stranded DNA-based approach that could transfer ~90% hydrophobic Au NCs into an aqueous solution.We experimentally and theoretically established that multivalent electrostatic and hydrophobic interactions between DNA strands and the hydrophobic ligand layer on Au NCs resulted in monodispersed DNA-coated Au NCs with high physical integrity in an aqueous solution. The fluorescence quantum yield of Au NCs was increased by ~13 fold, and surface-constrained DNA retained the specific recognition ability for biosensing. We further demonstrated the versatility of this phase-transfer approach, which thus holds great potential to advance biological and medical applications of Au NCs.Yu Li Hui Lu Zhibei Qu Mingqiang Li Haoran Zheng Peilin Gu Jiye Shi Jiang Li Qian Li Lihua Wang Jing Chen Chunhai Fan Jianlei Shen 2022Science China Chemistry2022,65,6:1
2Insight on metal ions inducing chiral self-assembly of DNA in silica mineralization显示文摘The self-assembly of DNA provides an attractive approach to understanding structural formation mechanism in living organisms and to assisting applications in materials chemistry.Herein,we investigated the effect of metal ions on chiral self-assembly of DNA through the synthesis of chiral mesostructured silica via self-assembly of metal ions,DNA,and silica source.31 types of multivalent cationic metal ions were found to induce formation of chiral impeller-like DNA-silica complexes due to the chiral stacking of DNA.The strength of the interaction between the metal ion and phosphate group of DNA was speculated for the chiral stacking of DNA due to close distance of adjacent DNA to assure mutual recognition.Theoretical calculations indicated that chiral packing of DNA depends on the stability of the bridging phosphate-metal ion-phosphate bonds of DNA based on electron delocalization in d-orbital conjugation of metal ions.Arepati Azhati Lu Han Zhibei Qu Zhouhong Ren Xi Liu Liwei Chen Shunai Che 2023Nano Research2023,16,3:0
3Coronal multi-walled silicon nanotubes显示文摘By means of first-principles density functional theory(DFT) calculations and molecular dynamics(MD) simulations,a series of coronal multi-walled silicon nanotubes(MWSiNTs) without or with hydrogen terminations are systematically identified.Notably,coronal MWSiNTs,where the interaction between the walls is preferable through covalent bonds rather than weak interaction,show better stability than CNT-like SiNTs. Moreover,they exhibit good elasticity with small Young’s modulus.The investigation of the electronic structure demonstrates that they present metallic characteristics,which is in striking contrast to bulk silicon.Thus,the MWSiNTs may find important applications in electronic devices.Yuanshuai Zhu Zhibei Qu Guilin Zhuang Wulin Chen Jianguo Wang 2013Journal of Energy Chemistry2013,22,3:0
4Spin selectivity of chiral mesostructured diamagnetic BiOBr films显示文摘The chirality-induced spin selectivity(CISS)has been found in the antiferromagnetic and paramagnetic chiral inorganic materials with unpaired electrons,while rarely reported in the spin-paired diamagnetic inorganic materials with spin-pairing energy.Here,we report the CISS in the spin-paired diamagnetic BiOBr endowed with three levels of chiral mesostructures.Chiral mesostructured BiOBr films(CMBFs)were fabricated through a sugar alcohol-induced hydrothermal route.The antipodal CMBFs exhibited chirality-dependent,magnetic field-independent magnetic circular dichroism(MCD)signals,which indicates the existence of spin selectivity.The spin selectivity of CMBFs was speculated to be the result of the competing effect between the externally applied magnetic field and the effective magnetic field arisen from the spin electron motions in chiral potential.The chirality-induced effective magnetic field acts on the magnetic moment of electrons,potentially overcoming the spin-pairing energy and producing opposite energy changes for spin-down and spin-up electrons.Kun Ding Jing Ai Hao Chen Zhibei Qu Peizhao Liu Lu Han Shunai Che Yingying Duan 2023Nano Research2023,16,8:0
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