Publications: Bozhi Tian
| Title | Year | Citations | Score |
|---|---|---|---|
|
Coaxial silicon nanowires as solar cells and nanoelectronic power sources
nature 449 (7164), 885-889, 2007 View Details |
2007 | 3471 | 99.6% |
|
Three-dimensional, flexible nanoscale field-effect transistors as localized bioprobes
Science 329 (5993), 830-834, 2010 View Details |
2010 | 859 | 97.4% |
|
Macroporous nanowire nanoelectronic scaffolds for synthetic tissues
Nature materials 11 (11), 986-994, 2012 View Details |
2012 | 662 | 97.0% |
|
Single nanowire photovoltaics
Chemical Society Reviews 38 (1), 16-24, 2009 View Details |
2009 | 670 | 96.5% |
|
Intracellular recordings of action potentials by an extracellular nanoscale field-effect transistor
Nature nanotechnology 7 (3), 174-179, 2012 View Details |
2012 | 496 | 95.7% |
|
Single and Tandem Axial p-i-n Nanowire Photovoltaic Devices
Nano letters 8 (10), 3456-3460, 2008 View Details |
2008 | 588 | 95.5% |
|
Cubic mesoporous silica with large controllable entrance sizes and advanced adsorption properties
Angewandte Chemie 115 (27), 3254-3258, 2003 View Details |
2003 | 701 | 95.3% |
|
Coaxial group III− nitride nanowire photovoltaics
Nano letters 9 (5), 2183-2187, 2009 View Details |
2009 | 501 | 94.8% |
|
Single-crystalline kinked semiconductor nanowire superstructures
Nature nanotechnology 4 (12), 824-829, 2009 View Details |
2009 | 437 | 93.8% |
|
Self-adjusted synthesis of ordered stable mesoporous minerals by acid–base pairs
Nature materials 2 (3), 159-163, 2003 View Details |
2003 | 550 | 93.8% |
|
General synthesis of ordered crystallized metal oxide nanoarrays replicated by microwave‐digested mesoporous silica
Advanced Materials 15 (16), 1370-1374, 2003 View Details |
2003 | 516 | 93.2% |
|
Photoelectrochemical modulation of neuronal activity with free-standing coaxial silicon nanowires
Biophysical Journal 114 (3), 393a, 2018 View Details |
2018 | 192 | 91.6% |
|
Rational design of silicon structures for optically controlled multiscale biointerfaces
Nature biomedical engineering 2 (7), 508-521, 2018 View Details |
2018 | 191 | 91.6% |
|
An epicardial bioelectronic patch made from soft rubbery materials and capable of spatiotemporal mapping of electrophysiological activity
Nature Electronics 3 (12), 775-784, 2020 View Details |
2020 | 126 | 91.4% |
|
Morphology development of mesoporous materials: a colloidal phase separation mechanism
Chemistry of Materials 16 (5), 889-898, 2004 View Details |
2004 | 383 | 91.1% |
|
High‐yield synthesis of periodic mesoporous silica rods and their replication to mesoporous carbon rods
Advanced Materials 14 (23), 1742-1745, 2002 View Details |
2002 | 396 | 90.9% |
|
Inorganic semiconductor biointerfaces
Nature Reviews Materials 3 (12), 473-490, 2018 View Details |
2018 | 173 | 90.6% |
|
Room‐Temperature Synthesis in Acidic Media of Large‐Pore Three‐Dimensional Bicontinuous Mesoporous Silica with Ia3d Symmetry
Angewandte Chemie 114 (20), 4032-4034, 2002 View Details |
2002 | 374 | 90.3% |
|
An atlas of nano-enabled neural interfaces
Nature nanotechnology 14 (7), 645-657, 2019 View Details |
2019 | 134 | 90.3% |
|
Nonionic block copolymer synthesis of large-pore cubic mesoporous single crystals by use of inorganic salts
Journal of the American Chemical Society 124 (17), 4556-4557, 2002 View Details |
2002 | 365 | 90.0% |
|
Stretchable Redox‐Active Semiconducting Polymers for High‐Performance Organic Electrochemical Transistors
Advanced Materials 34 (23), 2201178, 2022 View Details |
2022 | 47 | 89.7% |
|
Facile synthesis and characterization of novel mesoporous and mesorelief oxides with gyroidal structures
Journal of the American Chemical Society 126 (3), 865-875, 2004 View Details |
2004 | 332 | 89.7% |
|
Electrical recording from hearts with flexible nanowire device arrays
Nano letters 9 (2), 914-918, 2009 View Details |
2009 | 271 | 89.3% |
|
Synthesis and characterization of chromium‐doped mesoporous tungsten oxide for gas sensing applications
Advanced Functional Materials 17 (11), 1801-1806, 2007 View Details |
2007 | 263 | 88.1% |
|
Controlled synthesis of millimeter-long silicon nanowires with uniform electronic properties
Nano letters 8 (9), 3004-3009, 2008 View Details |
2008 | 249 | 87.9% |
|
Nanowire transistor arrays for mapping neural circuits in acute brain slices
Proceedings of the National Academy of Sciences 107 (5), 1882-1887, 2010 View Details |
2010 | 229 | 87.1% |
|
Nanowired bioelectric interfaces: focus review
Chemical reviews 119 (15), 9136-9152, 2019 View Details |
2019 | 102 | 86.9% |
|
Heterogeneous silicon mesostructures for lipid-supported bioelectric interfaces
Nature materials 15 (9), 1023-1030, 2016 View Details |
2016 | 147 | 86.8% |
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Nanostructured metal oxides synthesized by hard template method for gas sensing applications
Sensors and Actuators B: Chemical 109 (1), 57-63, 2005 View Details |
2005 | 244 | 86.2% |
|
Microwave assisted template removal of siliceous porous materials
Chemical Communications, 1186-1187, 2002 View Details |
2002 | 244 | 85.1% |
|
A wavelength-selective photonic-crystal waveguide coupled to a nanowire light source
Nature photonics 2 (10), 622-626, 2008 View Details |
2008 | 203 | 85.0% |
|
One-step nanocasting synthesis of highly ordered single crystalline indium oxide nanowire arrays from mesostructured frameworks
Journal of the American Chemical Society 125 (16), 4724-4725, 2003 View Details |
2003 | 246 | 84.9% |
|
Optical stimulation of cardiac cells with a polymer-supported silicon nanowire matrix
Proceedings of the National Academy of Sciences 116 (2), 413-421, 2019 View Details |
2019 | 83 | 83.6% |
|
Porosity-based heterojunctions enable leadless optoelectronic modulation of tissues
Nature Materials 21 (6), 647-655, 2022 View Details |
2022 | 29 | 82.4% |
|
Recent advances in bioelectronics chemistry
Chemical Society Reviews 49 (22), 7978-8035, 2020 View Details |
2020 | 65 | 82.3% |
|
Plasmonic photothermal gold bipyramid nanoreactors for ultrafast real-time bioassays
Journal of the American Chemical Society 139 (24), 8054-8057, 2017 View Details |
2017 | 101 | 81.9% |
|
Rational growth of branched nanowire heterostructures with synthetically encoded properties and function
Proceedings of the National Academy of Sciences 108 (30), 12212-12216, 2011 View Details |
2011 | 147 | 81.2% |
|
Highly crystallized mesoporous TiO 2 films and their applications in dye sensitized solar cells
Journal of Materials Chemistry 15 (24), 2414-2420, 2005 View Details |
2005 | 176 | 81.1% |
|
Nongenetic optical neuromodulation with silicon-based materials
Nature protocols 14 (5), 1339-1376, 2019 View Details |
2019 | 69 | 80.3% |
|
Outside looking in: nanotube transistor intracellular sensors
Nano letters 12 (6), 3329-3333, 2012 View Details |
2012 | 131 | 80.1% |
|
Luminescent and Raman active silver nanoparticles with polycrystalline structure
Journal of the American Chemical Society 130 (32), 10472-10473, 2008 View Details |
2008 | 150 | 79.8% |
|
A fast way for preparing crack-free mesostructured silica monolith
Chemistry of materials 15 (2), 536-541, 2003 View Details |
2003 | 172 | 79.5% |
|
Nanotraps for the containment and clearance of SARS-CoV-2
Matter 4 (6), 2059-2082, 2021 View Details |
2021 | 40 | 79.3% |
|
Cellular uptake and dynamics of unlabeled freestanding silicon nanowires
Science advances 2 (12), e1601039, 2016 View Details |
2016 | 95 | 79.1% |
|
Ordered mesoporous niobium oxide film: a novel matrix for assembling functional proteins for bioelectrochemical applications
Advanced Materials 15 (22), 1932-1936, 2003 View Details |
2003 | 160 | 78.2% |
|
Nanowires and electrical stimulation synergistically improve functions of hiPSC cardiac spheroids
Nano letters 16 (7), 4670-4678, 2016 View Details |
2016 | 90 | 78.0% |
|
Design and implementation of functional nanoelectronic interfaces with biomolecules, cells, and tissue using nanowire device arrays
IEEE transactions on nanotechnology 9 (3), 269-280, 2009 View Details |
2009 | 131 | 77.6% |
|
Salt effect in the synthesis of mesoporous silica templated by non-ionic block copolymers
Chemical Communications, 2726-2727, 2001 View Details |
2001 | 152 | 77.2% |
|
Silicon nanowire-induced maturation of cardiomyocytes derived from human induced pluripotent stem cells
Nano letters 15 (5), 2765-2772, 2015 View Details |
2015 | 93 | 77.0% |
|
Atomic gold–enabled three-dimensional lithography for silicon mesostructures
Science 348 (6242), 1451-1455, 2015 View Details |
2015 | 93 | 77.0% |
|
Synthetic nanoelectronic probes for biological cells and tissues
Annual review of analytical chemistry 6, 31-51, 2013 View Details |
2013 | 104 | 76.7% |
|
Bioadhesive polymer semiconductors and transistors for intimate biointerfaces
Science 381 (6658), 686-693, 2023 View Details |
2023 | 12 | 75.7% |
|
Soft materials as biological and artificial membranes
Chemical Society Reviews 50 (22), 12679-12701, 2021 View Details |
2021 | 33 | 75.1% |
|
Recent advances in the synthesis of non-siliceous mesoporous materials
Current Opinion in Solid State and Materials Science 7 (3), 191-197, 2003 View Details |
2003 | 131 | 74.6% |
|
Dissecting biological and synthetic soft–hard interfaces for tissue-like systems
Chemical reviews 122 (5), 5233-5276, 2021 View Details |
2021 | 32 | 74.4% |
|
Achieving tissue-level softness on stretchable electronics through a generalizable soft interlayer design
Nature Communications 14 (1), 4488, 2023 View Details |
2023 | 11 | 73.7% |
|
Micelle-enabled self-assembly of porous and monolithic carbon membranes for bioelectronic interfaces
Nature nanotechnology 16 (2), 206-213, 2021 View Details |
2021 | 29 | 72.0% |
|
A soil-inspired dynamically responsive chemical system for microbial modulation
Nature chemistry 15 (1), 119-128, 2023 View Details |
2023 | 10 | 71.4% |
|
Synthesis of mesoporous silica from commercial poly (ethylene oxide)/poly (butylene oxide) copolymers: toward the rational design of ordered mesoporous materials
The Journal of Physical Chemistry B 107 (48), 13368-13375, 2003 View Details |
2003 | 109 | 71.0% |
|
Recent advances in materials and applications for bioelectronic and biorobotic systems
View 3 (3), 20200157, 2022 View Details |
2022 | 17 | 70.8% |
|
A sensitive mediator-free tyrosinase biosensor based on an inorganic–organic hybrid titania sol–gel matrix
Analytica Chimica Acta 489 (2), 199-206, 2003 View Details |
2003 | 104 | 70.0% |
|
Roadmap on semiconductor–cell biointerfaces
Physical biology 15 (3), 031002, 2018 View Details |
2018 | 51 | 69.3% |
|
A Multifunctional Neutralizing Antibody‐Conjugated Nanoparticle Inhibits and Inactivates SARS‐CoV‐2
Advanced Science 9 (2), 2103240, 2022 View Details |
2022 | 16 | 69.3% |
|
Texturing silicon nanowires for highly localized optical modulation of cellular dynamics
Nano letters 18 (7), 4487-4492, 2018 View Details |
2018 | 50 | 68.8% |
|
Laser writing of nitrogen-doped silicon carbide for biological modulation
Science advances 6 (34), eaaz2743, 2020 View Details |
2020 | 35 | 68.7% |
|
Fast preparation of highly ordered nonsiliceous mesoporous materials via mixed inorganic precursors
Chemical Communications, 1824-1825, 2002 View Details |
2002 | 96 | 68.3% |
|
Synthesis of siliceous hollow spheres with ultra large mesopore wall structures by reverse emulsion templating
Chemistry Letters 31 (1), 62-63, 2002 View Details |
2002 | 89 | 66.7% |
|
Block copolymer templating syntheses of ordered large-pore stable mesoporous aluminophosphates and Fe-aluminophosphate based on an “acid–base pair” route
Microporous and mesoporous materials 67 (2-3), 123-133, 2004 View Details |
2004 | 86 | 66.0% |
|
Preparation of highly ordered mesoporous WO3–TiO2 as matrix in matrix-assisted laser desorption/ionization mass spectrometry
Microporous and Mesoporous Materials 78 (1), 37-41, 2005 View Details |
2005 | 82 | 65.9% |
|
Novel approaches to synthesize self-supported ultrathin carbon nanowire arrays templated by MCM-41
Chemical Communications, 2726-2727, 2003 View Details |
2003 | 85 | 65.8% |
|
Dynamic and programmable cellular-scale granules enable tissue-like materials
Matter 2 (4), 948-964, 2020 View Details |
2020 | 30 | 64.6% |
|
Single-strand spider silk templating for the formation of hierarchically ordered hollow mesoporous silica fibers
Journal of Materials Chemistry 13 (4), 666-668, 2003 View Details |
2003 | 79 | 64.2% |
|
Electrochemistry and biosensing of glucose oxidase based on mesoporous carbons with different spatially ordered dimensions
Talanta 78 (3), 705-710, 2009 View Details |
2009 | 69 | 63.6% |
|
Cell number per spheroid and electrical conductivity of nanowires influence the function of silicon nanowired human cardiac spheroids
Acta biomaterialia 51, 495-504, 2017 View Details |
2017 | 44 | 62.4% |
|
Free-standing kinked silicon nanowires for probing inter-and intracellular force dynamics
Nano letters 15 (8), 5492-5498, 2015 View Details |
2015 | 51 | 62.1% |
|
Mesostructured pure and copper-catalyzed tungsten oxide for NO2 detection
Sensors and Actuators B: Chemical 126 (1), 18-23, 2007 View Details |
2007 | 67 | 62.0% |
|
Synthesis and characterization of small pore thick-walled SBA-16 templated by oligomeric surfactant with ultra-long hydrophilic chains
Microporous and mesoporous materials 67 (2-3), 135-141, 2004 View Details |
2004 | 70 | 61.6% |
|
Electrochemistry and biosensing reactivity of heme proteins adsorbed on the structure-tailored mesoporous Nb2O5 matrix
Analytica chimica acta 519 (1), 31-38, 2004 View Details |
2004 | 69 | 61.3% |
|
Living myofibroblast–silicon composites for probing electrical coupling in cardiac systems
Proceedings of the National Academy of Sciences 116 (45), 22531-22539, 2019 View Details |
2019 | 31 | 60.5% |
|
Nongenetic optical methods for measuring and modulating neuronal response
ACS nano 12 (5), 4086-4095, 2018 View Details |
2018 | 36 | 60.1% |
|
Biocompatible and Nanoenabled Technologies for Biological Modulation
Advanced Materials Technologies 7 (2), 2100216, 2022 View Details |
2022 | 11 | 58.4% |
|
Design, synthesis, and characterization of novel nanowire structures for photovoltaics and intracellular probes
Pure and Applied Chemistry 83 (12), 2153-2169, 2011 View Details |
2011 | 53 | 58.3% |
|
Learning from solar energy conversion: Biointerfaces for artificial photosynthesis and biological modulation
Nano letters 19 (4), 2189-2197, 2019 View Details |
2019 | 28 | 57.6% |
|
Silicon nanowires for intracellular optical interrogation with subcellular resolution
Nano letters 20 (2), 1226-1232, 2020 View Details |
2020 | 23 | 57.4% |
|
Syntheses of high-quality mesoporous materials directed by blends of nonionic amphiphiles under nonaqueous conditions
Journal of Solid State Chemistry 167 (2), 324-329, 2002 View Details |
2002 | 55 | 56.9% |
|
Synthesis of highly ordered thermally stable cubic mesostructured zirconium oxophosphate templated by tri-headgroup quaternary ammonium surfactants
Chemistry of materials 15 (21), 4046-4051, 2003 View Details |
2003 | 51 | 55.2% |
|
Biomimetic approaches toward smart bio-hybrid systems
Nano research 11, 3009-3030, 2018 View Details |
2018 | 29 | 54.3% |
|
Soft–hard composites for bioelectric interfaces
Trends in chemistry 2 (6), 519-534, 2020 View Details |
2020 | 20 | 53.4% |
|
Synthesis and Electrochemical Properties of Semicrystalline Gyroidal Mesoporous MnO2
Chinese Journal of Chemistry 24 (7), 835-839, 2006 View Details |
2006 | 44 | 52.6% |
|
Periplasmic biomineralization for semi-artificial photosynthesis
Science Advances 9 (29), eadg5858, 2023 View Details |
2023 | 5 | 51.6% |
|
Bioelectronic devices: Long-lived recordings
Nature Biomedical Engineering 1 (3), 0048, 2017 View Details |
2017 | 29 | 51.4% |
|
Ordered nanowire arrays of metal sulfides templated by mesoporous silica SBA-15 via a simple impregnation reaction
Chemistry letters 32 (9), 824-825, 2003 View Details |
2003 | 40 | 50.6% |
|
Structured silicon for revealing transient and integrated signal transductions in microbial systems
Science Advances 6 (7), eaay2760, 2020 View Details |
2020 | 18 | 50.3% |
|
Biological Interfaces, Modulation, and Sensing with Inorganic Nano‐Bioelectronic Materials
Small Methods 4 (5), 1900868, 2020 View Details |
2020 | 18 | 50.3% |
|
Synthesis of ordered small pore mesoporous silicates with tailorable pore structures and sizes by polyoxyethylene alkyl amine surfactant
Microporous and mesoporous materials 90 (1-3), 23-31, 2006 View Details |
2006 | 37 | 49.1% |
|
Nanoscale semiconductor devices as new biomaterials
Biomaterials science 2 (5), 619-626, 2014 View Details |
2014 | 31 | 47.9% |
|
Nanoscale silicon for subcellular biointerfaces
Journal of Materials Chemistry B 5 (23), 4276-4289, 2017 View Details |
2017 | 25 | 47.5% |
|
Rational design of semiconductor nanostructures for functional subcellular interfaces
Accounts of chemical research 51 (5), 1014-1022, 2018 View Details |
2018 | 21 | 45.5% |
|
Nanoelectronics for minimally invasive cellular recordings
Advanced Functional Materials 30 (29), 1906210, 2020 View Details |
2020 | 15 | 45.1% |
|
Semiconductor Nanowire‐Based Cellular and Subcellular Interfaces
Advanced Functional Materials 32 (11), 2107997, 2022 View Details |
2022 | 7 | 44.6% |
|
Microwave-assisted solvothermal synthesis of radial ZnS nanoribbons
Chemistry letters 33 (5), 522-523, 2004 View Details |
2004 | 29 | 44.1% |
|
Synthesis of Large-Pore Periodic Mesoporous Organosilica (PMO) with Bicontinuous Cubic Structure of Ia–3d Symmetry
Chemistry letters 34 (2), 182-183, 2005 View Details |
2005 | 28 | 44.0% |
|
Nano-enabled cellular engineering for bioelectric studies
Nano research 13, 1214-1227, 2020 View Details |
2020 | 14 | 43.3% |
|
Synthesis of metal-capped semiconductor nanowires from heterodimer nanoparticle catalysts
Journal of the American Chemical Society 142 (43), 18324-18329, 2020 View Details |
2020 | 14 | 43.3% |
|
Talking to cells: semiconductor nanomaterials at the cellular interface
Advanced biosystems 2 (4), 1700242, 2018 View Details |
2018 | 18 | 41.6% |
|
Static synthesis of high-quality MCM-22 zeolite with high SiO2/Al2O3 ratio
Chinese Science Bulletin 49, 556-561, 2004 View Details |
2004 | 24 | 41.0% |
|
Biology-guided engineering of bioelectrical interfaces
Nanoscale Horizons 7 (2), 94-111, 2022 View Details |
2022 | 6 | 39.9% |
|
Methods and systems for scaffolds comprising nanoelectronic components
US Patent 9,786,850, 2017 View Details |
2017 | 18 | 39.4% |
|
Alloy-assisted deposition of three-dimensional arrays of atomic gold catalyst for crystal growth studies
Nature communications 8 (1), 2014, 2017 View Details |
2017 | 18 | 39.4% |
|
Nongenetic neural control with light
Science 365 (6452), 457-457, 2019 View Details |
2019 | 14 | 39.2% |
|
A neutralizing antibody-conjugated photothermal nanoparticle captures and inactivates SARS-CoV-2
biorxiv, 2020.11. 30.404624, 2020 View Details |
2020 | 11 | 36.9% |
|
Tracking longitudinal rotation of silicon nanowires for biointerfaces
Nano Letters 20 (5), 3852-3857, 2020 View Details |
2020 | 11 | 36.9% |
|
Curving neural nanobioelectronics
Nature Nanotechnology 14 (8), 733-735, 2019 View Details |
2019 | 12 | 35.5% |
|
Morphological control of highly ordered mesoporous carbon
Studies in Surface Science and Catalysis 146, 45-48, 2003 View Details |
2003 | 16 | 35.4% |
|
Bionic opto-responsive fiber for directing neurite growth
Materials Today Nano 22, 100311, 2023 View Details |
2023 | 3 | 35.0% |
|
Nanowired human cardiac organoid transplantation enables highly efficient and effective recovery of infarcted hearts
Science Advances 9 (31), eadf2898, 2023 View Details |
2023 | 3 | 35.0% |
|
Perspectives on tissue-like bioelectronics for neural modulation
Iscience 26 (5), 2023 View Details |
2023 | 3 | 35.0% |
|
Nanoenabled trainable systems: from biointerfaces to biomimetics
ACS nano 16 (12), 19651-19664, 2022 View Details |
2022 | 5 | 34.6% |
|
Distributed interfacing by nanoscale photodiodes enables single-neuron light activation and sensory enhancement in 3D spinal explants
Science Advances 8 (31), eabp9257, 2022 View Details |
2022 | 5 | 34.6% |
|
An Easy Route for the Synthesis of Ordered Three-Dimensional Large-Pore Mesoporous Organosilicas with Im-3m Symmetry
Chemistry letters 33 (9), 1132-1133, 2004 View Details |
2004 | 15 | 33.5% |
|
New catalysts for dichlorodifluoromethane hydrolysis: Mesostructured titanium and aluminum phosphates
Journal of Molecular Catalysis A: Chemical 242 (1-2), 218-223, 2005 View Details |
2005 | 14 | 32.7% |
|
Preparation and Enhanced Electrochromic Property of Three-dimensional Ordered Mesostructured Mixed Tungsten–Titanium Oxides
Chemistry letters 33 (10), 1396-1397, 2004 View Details |
2004 | 14 | 32.6% |
|
Nanotechnology for surgeons
Wiley Interdisciplinary Reviews: Nanomedicine and Nanobiotechnology 3 (3 …, 2011 View Details |
2011 | 15 | 32.5% |
|
Nano‐and Microscale Optical and Electrical Biointerfaces and Their Relevance to Energy Research
Small 17 (34), 2100165, 2021 View Details |
2021 | 7 | 31.6% |
|
Bent nanowires and related probing of species
US Patent 9,297,796, 2016 View Details |
2016 | 13 | 31.1% |
|
Bent nanowires and related probing of species
US Patent 9,297,796, 2016 View Details |
2016 | 13 | 31.1% |
|
Preparation of highly ordered well-defined single crystal cubic mesoporous silica templated by gemini surfactant
Chemistry letters 31 (6), 584-585, 2002 View Details |
2002 | 12 | 30.9% |
|
Branched nanoscale wires
US Patent 8,058,640, 2011 View Details |
2011 | 13 | 30.2% |
|
Nanoscale sensors for intracellular and other applications
US Patent 9,638,717, 2017 View Details |
2017 | 11 | 29.2% |
|
Freestanding nanomaterials for subcellular neuronal interfaces
Iscience 25 (1), 2022 View Details |
2022 | 4 | 28.3% |
|
Advances in mesoporous materials templated by nonionic block copolymers
Nanoporous Materials: Science and Engineering, 14-46, 2004 View Details |
2004 | 10 | 27.7% |
|
Biodegradable mesostructured polymer membranes
Nano letters 13 (9), 4410-4415, 2013 View Details |
2013 | 11 | 27.1% |
|
Actin-packed topography: Cytoskeletal response to curvature
Proceedings of the National Academy of Sciences 116 (46), 22897-22898, 2019 View Details |
2019 | 8 | 27.1% |
|
Optical determination of silicon nanowire diameters for intracellular applications
The Journal of Physical Chemistry C 119 (52), 29105-29115, 2015 View Details |
2015 | 10 | 25.9% |
|
Designer synthesis of mesoporous solids via block copolymer templating pathway
Studies in Surface Science and Catalysis 148, 139-161, 2004 View Details |
2004 | 7 | 22.8% |
|
3D calcite heterostructures for dynamic and deformable mineralized matrices
Nature Communications 8 (1), 509, 2017 View Details |
2017 | 7 | 21.8% |
|
Gold-Decorated Silicon Nanowire Photocatalysts for Intracellular Production of Hydrogen Peroxide
ACS Applied Materials & Interfaces 13 (13), 15490-15500, 2021 View Details |
2021 | 4 | 19.3% |
|
Bridging the gap—Biomimetic design of bioelectronic interfaces
Current Opinion in Biotechnology 72, 69-75, 2021 View Details |
2021 | 4 | 19.3% |
|
Nanoenabled bioelectrical modulation
Accounts of Materials Research 2 (10), 895-906, 2021 View Details |
2021 | 4 | 19.3% |
|
Scaffolds comprising nanoelectronic components for cells, tissues, and other applications
US Patent 9,457,128, 2016 View Details |
2016 | 6 | 18.8% |
|
Nanostructured mesoporous tungsten oxide for gas sensor applications
Nanotechnology II 5838, 61-68, 2005 View Details |
2005 | 4 | 15.7% |
|
Crystalline mesoporous tungsten oxide for gas sensing applications
Conference on Electron Devices, 2005 Spanish, 517-520, 2005 View Details |
2005 | 4 | 15.7% |
|
Probing the electronic properties of the electrified silicon/water interface by combining simulations and experiments
Proceedings of the National Academy of Sciences 118 (46), e2114929118, 2021 View Details |
2021 | 3 | 14.3% |
|
Multifunctional optofluidic brain probes
Nature Biomedical Engineering 3 (8), 596-597, 2019 View Details |
2019 | 3 | 12.2% |
|
Synthesis of hierarchically arrayed silica nanorods via reverse amphiphilic block copolymer mesophases
Chemical Journal of Chinese Universities 24 (1), 5, 2003 View Details |
2003 | 3 | 11.9% |
|
Characterization and Modeling of Laser Photothermal Heating of Nanocrystalline Silicon Nanowires in Cells to Explain Experimental Phenomena
The Journal of Physical Chemistry C 125 (40), 22111-22119, 2021 View Details |
2021 | 2 | 8.2% |
|
Methods and systems for scaffolds comprising nanoelectronic components
US Patent 10,355,229, 2019 View Details |
2019 | 2 | 7.3% |
|
Hydrogen plasma-assisted growth of gold nanowires
Crystal Growth & Design 20 (6), 4185-4192, 2020 View Details |
2020 | 2 | 7.3% |
|
Amorphous, porous silicon materials and related methods
US Patent 10,663,450, 2020 View Details |
2020 | 2 | 7.3% |
|
Perspectives for Seamless Integration of Bioelectronic Systems in Neuromedicine
Neural Interface Engineering: Linking the Physical World and the Nervous …, 2020 View Details |
2020 | 2 | 7.3% |
|
HRTEM and XRD analysis of P6mm and Ia3d double gyroidal WO3 structures
Microscopy of Semiconducting Materials: Proceedings of the 14th Conference …, 2005 View Details |
2005 | 2 | 7.0% |
|
Scalable breakthrough
Nature nanotechnology 13 (10), 875-876, 2018 View Details |
2018 | 2 | 6.9% |
|
Nanowire Biosensors
View Details |
2014 | 2 | 6.3% |
|
Restructuring of ultra-thin branches in multi-nucleated silicon nanowires
Pure and Applied Chemistry 92 (12), 1921-1928, 2020 View Details |
2020 | 1 | 0.0% |
|
Strategies to fabricate large-pore three-dimensional mesoporous materials with versatile applications
Studies in Surface Science and Catalysis 146, 9-14, 2003 View Details |
2003 | 1 | 0.0% |
|
Cardiac tissues containing semiconductor nanomaterials and methods of preparing and using the same
US Patent 10,988,735, 2021 View Details |
2021 | 1 | 0.0% |
|
Silicon Nanowires and Optical Stimulation for Investigations of Intra-and Intercellular Electrical Coupling
JoVE (Journal of Visualized Experiments), e61581, 2021 View Details |
2021 | 1 | 0.0% |
|
Mesostructured polymer membranes and other articles
US Patent App. 14/911,792, 2016 View Details |
2016 | 1 | 0.0% |
|
Scaffolds comprising nanoelectronic components for cells, tissues, and other applications
US Patent 10,369,255, 2019 View Details |
2019 | 1 | 0.0% |
|
Perspectives on Multiscale Colloid-Based Materials for Biomedical Applications
Langmuir 39 (39), 13759-13769, 2023 View Details |
2023 | 1 | 0.0% |
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Nanoporous arrays of metal sulfides templated by mesoporous silica
Studies in Surface Science and Catalysis 154, 939-945, 2004 View Details |
2004 | 1 | 0.0% |
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Injectable electronics as a modern day ‘ship in a bottle’
NPG Asia Materials 7 (9), e214-e214, 2015 View Details |
2015 | 1 | 0.0% |
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Bent nanowires and related probing of species
US Patent App. 15/047,267, 2016 View Details |
2016 | 1 | 0.0% |
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Mesostructured WO3 as a sensing material for NO2 detection
MRS Online Proceedings Library (OPL) 915, 0915-R06-09, 2006 View Details |
2006 | 1 | 0.0% |