Search Results - "Tian, Demei"
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Temperature‐Sensitive Artificial Channels through Pillar[5]arene‐based Host–Guest Interactions
Published in Angewandte Chemie International Edition (02-05-2017)“…In living systems, temperature‐sensitive ion channels play a vital role in numerous cellular processes and can be controlled by biological ion channels in…”
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A biomimetic chiral-driven ionic gate constructed by pillar[6]arene-based host–guest systems
Published in Nature communications (05-07-2018)“…Inspired by glucose-sensitive ion channels, herein we describe a biomimetic glucose-enantiomer-driven ion gate via the introduction of the chiral…”
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Temperature-Responsive Switch Constructed from an Anthracene-Functionalized Pillar[5]arene-Based Host–Guest System
Published in Organic letters (04-03-2016)“…A monofunctionalized anthracene pillar[5]arene (MAP5) was designed and synthesized by a click reaction. MAP5 was bound to an ionic liquid through host–guest…”
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A light-regulated host–guest-based nanochannel system inspired by channelrhodopsins protein
Published in Nature communications (15-08-2017)“…The light-controlled gating of ion transport across membranes is central to nature (e.g., in protein channels). Herein, inspired by channelrhodopsins, we…”
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Dynamic Self-Assembly Adhesion of a Paraquat Droplet on a Pillar[5]arene Surface
Published in Angewandte Chemie International Edition (04-10-2016)“…The adhesion of herbicide droplets on leaf surfaces plays an important role in the herbicide's adsorption by crops. How to control the adhesive binding which…”
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Cooperative Binding of Bifunctionalized and Click-Synthesized Silver Nanoparticles for Colorimetric Co2+ Sensing
Published in ACS applied materials & interfaces (24-03-2010)“…Bifunctionalized silver nanoparticles (triazole-carboxyl Ag NPs) were synthesized through a click reaction and have a cooperative effect on recognition of…”
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Fabrication of a mercaptoacetic acid pillar[5]arene assembled nanochannel: a biomimetic gate for mercury poisoning
Published in Chemical science (Cambridge) (01-01-2016)“…Mercury ion binding blocks potassium ion channels, which leads to toxicity in vivo . It is challenging to design a simple and efficient artificial system to…”
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Alanine-Based Chiral Metallogels via Supramolecular Coordination Complex Platforms: Metallogelation Induced Chirality Transfer
Published in Journal of the American Chemical Society (07-03-2018)“…Chiral self-assemblies constantly attract great interest because of their potential to provide insight into biological systems and materials science. Herein we…”
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Macroscopic Responsive Liquid Quantum Dots Constructed via Pillar[5]arene-Based Host-Guest Interactions
Published in Chemistry : a European journal (19-09-2016)“…Liquid quantum dots (QDs) have been used as a fluorescent films sensor. Constructing a macroscopic, responsive, liquid QD system for lysine (Lys) is a…”
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Chiral recognition of Arg based on label-free PET nanochannel
Published in Chemical communications (Cambridge, England) (21-03-2015)“…Herein, we design a label-free PET nanochannel for enantioselective recognition of Arg by adding bovine serum albumin (BSA) as chiral selector. This method…”
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Bipyrene-Functionalized Graphene as a “Turn-On” Fluorescence Sensor for Manganese(II) Ions in Living cells
Published in ACS applied materials & interfaces (13-02-2013)“…1,2-bis-(2-pyren-1-ylmethylamino-ethoxy) ethane (NPEY) was synthesized and brought to the surface of graphene nanosheets (GNs) via π–π stacking, which provided…”
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Chiral Responsive Liquid Quantum Dots
Published in Advanced materials (Weinheim) (01-08-2017)“…How to convert the weak chiral‐interaction into the macroscopic properties of materials remains a huge challenge. Here, this study develops highly fluorescent,…”
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Protein Adsorption Switch Constructed by a Pillar[5]arene-Based Host-Guest Interaction
Published in Chemistry : a European journal (18-01-2016)“…The interfacial properties of solid substrates are of importance for protein adsorption. Herein, we report a reversible protein adsorption switch based on the…”
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Advancing bladder cancer management: development of a prognostic model and personalized therapy
Published in Frontiers in immunology (22-07-2024)“…Bladder cancer (BLCA) was recognized as a significant public health challenge due to its high incidence and mortality rates. The influence of molecular…”
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A Photoresponsive Wettability Switch Based on a Dimethylamino Calix[4]arene
Published in Chemistry : a European journal (21-07-2014)“…A photoreversible switch based on a photoresponsive host–guest system consisting of dimethylamino calix[4]arene L and 4‐(phenylazo)benzoic acid (O) is…”
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Synthesis of Coumarin-Pillar[5]arene as a Selective Fluorescent Probe for Methyl-Parathion
Published in Chinese journal of chemistry (01-03-2015)“…A novel coumarin‐pillar[5]arene derivative (P5C10) was prepared. Fluorescence spectroscopy indicates that P5C10 shows good selectivity towards…”
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Sensitive fluorescence sensor for nitroaniline isomers based on calix[4]arene bearing naphthyl groups
Published in Tetrahedron (08-07-2012)“…Novel naphthyl-modified calix[4]arene was synthesized by click chemistry, and exhibited high affinity and selectivity for p-nitroaniline by the fluorescence…”
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Metal ions recognition by 1,2,3-triazolium calix[4]arene esters synthesized via click chemistry
Published in Journal of Inclusion Phenomena and Macrocyclic Chemistry (01-02-2010)“…Two triazole-modified calix[4]arene diesters were synthesized via Huisgen 1,3-dipolar cycloaddition between azides esters and alkynylcalixarenes. Their…”
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Temperature‐Sensitive Artificial Channels through Pillar[5]arene‐based Host–Guest Interactions
Published in Angewandte Chemie (02-05-2017)“…In living systems, temperature‐sensitive ion channels play a vital role in numerous cellular processes and can be controlled by biological ion channels in…”
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20
Synthesis of calix[4]crown-4 oligomers containing hard and soft ion binding sites
Published in Journal of applied polymer science (05-06-2007)“…Three calix [4]crown‐4 derivatives and their oligomers, p‐tert‐butylcalix [4]crown‐4 oligomer 5, p‐tert‐butylcalix [4]dioxacrown‐4 oligomer 6,…”
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