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Critical‐Layered MoS<sub>2</sub> for the Enhancement of Supercontinuum Generation in Photonic Crystal Fibre.
- Published in:
- Advanced Materials, 2024, v. 36, n. 40, p. 1, doi. 10.1002/adma.202403696
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- Article
Surface-Enhanced Raman Scattering of p-Aminothiophenol on a Au(core)/Cu(shell) Nanoparticle AssemblySeparate Analysis of Chemical and Electromagnetic Enhancement.
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- ChemPhysChem, 2005, v. 6, n. 5, p. 913, doi. 10.1002/cphc.200400254
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- Article
Surfactant-Directed Polypyrrole/CNT Nanocables: Synthesis, Characterization, and Enhanced Electrical Properties.
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- ChemPhysChem, 2004, v. 5, n. 7, p. 998, doi. 10.1002/cphc.200301217
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- Article
Chemically Assembled Single-Wall Carbon Nanotubes and their Electrochemistry.
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- ChemPhysChem, 2002, v. 3, n. 10, p. 898, doi. 10.1002/1439-7641(20021018)3:10<898::AID-CPHC898>3.0.CO;2-U
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- Article
Self‐Aided Batch Growth of 12‐Inch Transfer‐Free Graphene Under Free Molecular Flow.
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- Advanced Functional Materials, 2023, v. 33, n. 3, p. 1, doi. 10.1002/adfm.202210771
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- Article
Self‐Aided Batch Growth of 12‐Inch Transfer‐Free Graphene Under Free Molecular Flow.
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- Advanced Functional Materials, 2023, v. 33, n. 3, p. 1, doi. 10.1002/adfm.202210771
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- Article
Bush‐Shaped Vertical Graphene/Nichrome Wire for Blackbody‐Like Radiative Heating.
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- Advanced Functional Materials, 2022, v. 32, n. 51, p. 1, doi. 10.1002/adfm.202208785
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- Article
Toward Direct Growth of Ultra‐Flat Graphene (Adv. Funct. Mater. 42/2022).
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- Advanced Functional Materials, 2022, v. 32, n. 42, p. 1, doi. 10.1002/adfm.202270239
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- Article
Direct Plasma‐Enhanced‐Chemical‐Vapor‐Deposition Syntheses of Vertically Oriented Graphene Films on Functional Insulating Substrates for Wide‐Range Applications (Adv. Funct. Mater. 42/2022).
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- Advanced Functional Materials, 2022, v. 32, n. 42, p. 1, doi. 10.1002/adfm.202270236
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Doping of Graphene Films: Open the way to Applications in Electronics and Optoelectronics.
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- Advanced Functional Materials, 2022, v. 32, n. 42, p. 1, doi. 10.1002/adfm.202203179
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- Article
The Rise of Graphene Photonic Crystal Fibers.
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- Advanced Functional Materials, 2022, v. 32, n. 42, p. 1, doi. 10.1002/adfm.202202282
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- Article
Direct Plasma‐Enhanced‐Chemical‐Vapor‐Deposition Syntheses of Vertically Oriented Graphene Films on Functional Insulating Substrates for Wide‐Range Applications.
- Published in:
- Advanced Functional Materials, 2022, v. 32, n. 42, p. 1, doi. 10.1002/adfm.202202026
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- Publication type:
- Article
Toward Direct Growth of Ultra‐Flat Graphene.
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- Advanced Functional Materials, 2022, v. 32, n. 42, p. 1, doi. 10.1002/adfm.202200428
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- Article
Electric Current Aligning Component Units during Graphene Fiber Joule Heating.
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- Advanced Functional Materials, 2022, v. 32, n. 11, p. 1, doi. 10.1002/adfm.202103493
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- Article
A Robust Ternary Heterostructured Electrocatalyst with Conformal Graphene Chainmail for Expediting Bi‐Directional Sulfur Redox in Li–S Batteries.
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- Advanced Functional Materials, 2021, v. 31, n. 23, p. 1, doi. 10.1002/adfm.202100586
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- Article
Synchronous Promotion in Sodiophilicity and Conductivity of Flexible Host via Vertical Graphene Cultivator for Longevous Sodium Metal Batteries.
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- Advanced Functional Materials, 2021, v. 31, n. 20, p. 1, doi. 10.1002/adfm.202101233
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- Article
Substrate Developments for the Chemical Vapor Deposition Synthesis of Graphene.
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- Advanced Materials Interfaces, 2020, v. 7, n. 7, p. 1, doi. 10.1002/admi.201902024
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- Article
Direct Growth of 5 in. Uniform Hexagonal Boron Nitride on Glass for High‐Performance Deep‐Ultraviolet Light‐Emitting Diodes.
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- Advanced Materials Interfaces, 2018, v. 5, n. 18, p. N.PAG, doi. 10.1002/admi.201800662
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- Article
Narrow-Gap Quantum Wires Arising from the Edges of Monolayer MoS<sub>2</sub> Synthesized on Graphene.
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- Advanced Materials Interfaces, 2016, v. 3, n. 17, p. n/a, doi. 10.1002/admi.201600332
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- Article
Quasi van der Waals Epitaxy of Single Crystalline GaN on Amorphous SiO<sub>2</sub>/Si(100) for Monolithic Optoelectronic Integration.
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- Advanced Science, 2024, v. 11, n. 20, p. 1, doi. 10.1002/advs.202305576
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- Article
Superclean Growth of Graphene Using a Cold‐Wall Chemical Vapor Deposition Approach.
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- Angewandte Chemie International Edition, 2020, v. 59, n. 39, p. 17214, doi. 10.1002/anie.202005406
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- Article
Frontispiece: Large‐Area Synthesis of Superclean Graphene via Selective Etching of Amorphous Carbon with Carbon Dioxide.
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- Angewandte Chemie International Edition, 2019, v. 58, n. 41, p. N.PAG, doi. 10.1002/anie.201984161
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- Article
Large‐Area Synthesis of Superclean Graphene via Selective Etching of Amorphous Carbon with Carbon Dioxide.
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- Angewandte Chemie International Edition, 2019, v. 58, n. 41, p. 14446, doi. 10.1002/anie.201905672
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- Article
Superclean Growth of Graphene Using a Cold‐Wall Chemical Vapor Deposition Approach.
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- Angewandte Chemie, 2020, v. 132, n. 39, p. 17367, doi. 10.1002/ange.202005406
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- Article
Frontispiz: Large‐Area Synthesis of Superclean Graphene via Selective Etching of Amorphous Carbon with Carbon Dioxide.
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- Angewandte Chemie, 2019, v. 131, n. 41, p. N.PAG, doi. 10.1002/ange.201984161
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- Publication type:
- Article
Large‐Area Synthesis of Superclean Graphene via Selective Etching of Amorphous Carbon with Carbon Dioxide.
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- Angewandte Chemie, 2019, v. 131, n. 41, p. 14588, doi. 10.1002/ange.201905672
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- Publication type:
- Article
Monolayer MoS<sub>2</sub> Growth on Au Foils and On-Site Domain Boundary Imaging.
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- Advanced Functional Materials, 2015, v. 25, n. 6, p. 842, doi. 10.1002/adfm.201403659
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- Article
Monolayer Films: Monolayer MoS<sub>2</sub> Growth on Au Foils and On-Site Domain Boundary Imaging (Adv. Funct. Mater. 6/2015).
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- Advanced Functional Materials, 2015, v. 25, n. 6, p. 826, doi. 10.1002/adfm.201570038
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- Article
Nanowires: A General Electrochemical Strategy for Synthesizing Charge-Transfer Complex Micro/Nanowires (Adv. Funct. Mater. 8/2010).
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- Advanced Functional Materials, 2010, v. 20, n. 8, p. n/a, doi. 10.1002/adfm.201090028
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- Article
A General Electrochemical Strategy for Synthesizing Charge-Transfer Complex Micro/Nanowires.
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- Advanced Functional Materials, 2010, v. 20, n. 8, p. 1209, doi. 10.1002/adfm.200902187
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- Article
High-Performance Photoresponsive Organic Nanotransistors with Single-Layer Graphenes as Two-Dimensional Electrodes.
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- Advanced Functional Materials, 2009, v. 19, n. 17, p. 2743, doi. 10.1002/adfm.200900408
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- Article
Optical detection of the susceptibility tensor in two-dimensional crystals.
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- Communications Physics, 2021, v. 4, n. 1, p. 1, doi. 10.1038/s42005-021-00711-3
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- Article
Utilization of Synergistic Effect of Dimension‐Differentiated Hierarchical Nanomaterials for Transparent and Flexible Wireless Communicational Elements.
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- Advanced Materials Technologies, 2020, v. 5, n. 4, p. 1, doi. 10.1002/admt.201901057
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- Article
Graphdiyne Filter for Decontaminating Lead-Ion-Polluted Water.
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- Advanced Electronic Materials, 2017, v. 3, n. 11, p. n/a, doi. 10.1002/aelm.201700122
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- Article
One-Step Growth of Graphene/Carbon Nanotube Hybrid Films on Soda-Lime Glass for Transparent Conducting Applications.
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- Advanced Electronic Materials, 2017, v. 3, n. 11, p. n/a, doi. 10.1002/aelm.201700212
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- Article
Giant Enhancement of Optical Second Harmonic Generation in Hollow-Core Fiber Integrated with GaSe Nanoflakes.
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- Acta Physico-Chimica Sinica, 2023, v. 39, n. 7, p. 1, doi. 10.3866/PKU.WHXB202212028
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- Article
Gaseous-Promotor-Assisted Direct Growth of Graphene on Insulating Substrates: Progress and Prospects.
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- Acta Physico-Chimica Sinica, 2023, v. 39, n. 1, p. 1, doi. 10.3866/PKU.WHXB202111011
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- Article
Graphene Photonic Crystal Fiber-Based Fluid Sensor toward Distributed Environmental Monitoring.
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- Acta Physico-Chimica Sinica, 2022, v. 38, n. 12, p. 1, doi. 10.3866/PKU.WHXB202108041
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- Article
Heating Characteristics of Graphene Glass Transparent Films.
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- Acta Physico-Chimica Sinica, 2021, v. 37, n. 10, p. 1, doi. 10.3866/PKU.WHXB202001024
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- Article
Highly sensitive hot electron bolometer based on disordered graphene.
- Published in:
- Scientific Reports, 2013, p. 1, doi. 10.1038/srep03533
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- Article
The edge- and basal-plane-specific electrochemistry of a single-layer graphene sheet.
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- Scientific Reports, 2013, p. 1, doi. 10.1038/srep02248
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- Article
Atomic mechanism of strong interactions at the graphene/sapphire interface.
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- Nature Communications, 2019, v. 10, n. 1, p. 1, doi. 10.1038/s41467-019-13023-6
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- Article
Printable magnesium ion quasi-solid-state asymmetric supercapacitors for flexible solar-charging integrated units.
- Published in:
- Nature Communications, 2019, v. 10, n. 1, p. N.PAG, doi. 10.1038/s41467-019-12900-4
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- Article
The 100th Anniversary of Chemical Research and Education at Peking University.
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- Chemistry - An Asian Journal, 2010, v. 5, n. 5, p. 964, doi. 10.1002/asia.201000265
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- Article
Continuous Single‐Crystalline GaN Film Grown on WS<sub>2</sub>‐Glass Wafer (Small 41/2022).
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- Small, 2022, v. 18, n. 41, p. 1, doi. 10.1002/smll.202202529
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- Article
Continuous Single‐Crystalline GaN Film Grown on WS<sub>2</sub>‐Glass Wafer.
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- Small, 2022, v. 18, n. 41, p. 1, doi. 10.1002/smll.202202529
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- Article
Graphene Transfer: Paving the Road for Applications of Chemical Vapor Deposition Graphene.
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- Small, 2021, v. 17, n. 48, p. 1, doi. 10.1002/smll.202007600
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- Article
Controllable Synthesis of Wafer‐Scale Graphene Films: Challenges, Status, and Perspectives.
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- Small, 2021, v. 17, n. 37, p. 1, doi. 10.1002/smll.202008017
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- Article
Graphene‐Nanorod Enhanced Quasi‐Van Der Waals Epitaxy for High Indium Composition Nitride Films.
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- Small, 2021, v. 17, n. 19, p. 1, doi. 10.1002/smll.202100098
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- Article
Conductance Switching and Mechanisms in Single-Molecule Junctions.
- Published in:
- Angewandte Chemie International Edition, 2013, v. 52, n. 33, p. 8666, doi. 10.1002/anie.201304301
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- Article