Hiroshi Matsui to Nanotechnology
                            
                            
                                This is a "connection" page, showing publications Hiroshi Matsui has written about Nanotechnology.
                            
                            
                            
                                
                                    
                                            
    
        
        
        
            Connection Strength
            
                
            
            2.618
         
        
        
     
 
    
        
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            de la Rica R, Matsui H. Applications of peptide and protein-based materials in bionanotechnology. Chem Soc Rev. 2010 Sep; 39(9):3499-509.
            
            
                Score: 0.330
             
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            de la Rica R, Fabijanic KI, Baldi A, Matsui H. Biomimetic crystallization nanolithography: simultaneous nanopatterning and crystallization. Angew Chem Int Ed Engl. 2010 Feb 15; 49(8):1447-50.
            
            
                Score: 0.322
             
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            Nuraje N, Su K, Yang NL, Matsui H. Liquid/Liquid interfacial polymerization to grow single crystalline nanoneedles of various conducting polymers. ACS Nano. 2008 Mar; 2(3):502-6.
            
            
                Score: 0.281
             
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            Zhao Z, Matsui H. Accurate immobilization of antibody-functionalized peptide nanotubes on protein-patterned arrays by optimizing their ligand-receptor interactions. Small. 2007 Aug; 3(8):1390-3.
            
            
                Score: 0.270
             
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            Bai H, Xu K, Xu Y, Matsui H. Fabrication of Au nanowires of uniform length and diameter using a monodisperse and rigid biomolecular template: collagen-like triple helix. Angew Chem Int Ed Engl. 2007; 46(18):3319-22.
            
            
                Score: 0.259
             
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            Djalali R, Samson J, Matsui H. Doughnut-shaped peptide nano-assemblies and their applications as nanoreactors. J Am Chem Soc. 2004 Jun 30; 126(25):7935-9.
            
            
                Score: 0.218
             
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            Banerjee IA, Yu L, Matsui H. Application of host-guest chemistry in nanotube-based device fabrication: photochemically controlled immobilization of azobenzene nanotubes on patterned alpha-CD monolayer/Au substrates via molecular recognition. J Am Chem Soc. 2003 Aug 13; 125(32):9542-3.
            
            
                Score: 0.205
             
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            Djalali R, Chen YF, Matsui H. Au nanocrystal growth on nanotubes controlled by conformations and charges of sequenced peptide templates. J Am Chem Soc. 2003 May 14; 125(19):5873-9.
            
            
                Score: 0.201
             
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            Djalali R, Chen YF, Matsui H. Au nanowire fabrication from sequenced histidine-rich peptide. J Am Chem Soc. 2002 Nov 20; 124(46):13660-1.
            
            
                Score: 0.195
             
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            de la Rica R, Pejoux C, Fernandez-Sanchez C, Baldi A, Matsui H. Peptide-nanotube biochips for label-free detection of multiple pathogens. Small. 2010 May 21; 6(10):1092-5.
            
            
                Score: 0.082
             
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            Pejoux C, de la Rica R, Matsui H. Biomimetic crystallization of sulfide semiconductor nanoparticles in aqueous solution. Small. 2010 May 07; 6(9):999-1002.
            
            
                Score: 0.082
             
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            Banerjee IA, Muniz G, Lee SY, Matsui H. Mineralization of semiconductor nanocrystals on peptide-coated bionanotubes and their pH-dependent morphology changes. J Nanosci Nanotechnol. 2007 Jul; 7(7):2287-92.
            
            
                Score: 0.067
             
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            Nuraje N, Banerjee IA, MacCuspie RI, Yu L, Matsui H. Biological bottom-up assembly of antibody nanotubes on patterned antigen arrays. J Am Chem Soc. 2004 Jul 07; 126(26):8088-9.
            
            
                Score: 0.055
             
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            Banerjee IA, Yu L, Matsui H. Cu nanocrystal growth on peptide nanotubes by biomineralization: size control of Cu nanocrystals by tuning peptide conformation. Proc Natl Acad Sci U S A. 2003 Dec 09; 100(25):14678-82.
            
            
                Score: 0.052