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  • An electron acceptor challenging fullerenes for efficient

    Adv Mater. 2015 Feb 1827(7) 1170-4. doi 10.1002/adma.. Epub 2015 Jan 7. Authors Yuze Lin 1 Jiayu Wang Zhi-Guo Zhang Huitao Bai Yongfang Li Daoben Zhu Xiaowei Zhan. Affiliation 1 Beijing National Laboratory

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  • SCIADVANCED MATERIALS FOR OPTICS

     ·  SCIADV MATER OPT ELECTR ADVANCED MATERIALS FOR OPTICS AND ELECTRONICS() 2015(impactfactor)

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  • Journal of Electronic Materials Volumes and issues

    Volume 48 JanuaryDecember 2019. December 2019 issue 12. November 2019 issue 11. Special Section Electronic Materials for Renewable Energy Applications 2018. October 2019 issue 10. Special Section U.S. Workshop on the Physics and Chemistry of II-VI Materials 2018. September 2019 issue 9.

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  • adv opt mater-SCI

    ADV MATER OPT ELECTR advanced materials for optics and electronics MI 0.662219 H greenSCI SCIJOURNAL 0

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  • adv electron mater-SCI

    ADV MATER OPT ELECTR. advanced materials for optics and electronics. MI 0.662219 H 0 . 0 . . . OPTOELECTRON ADV MAT. Optoelectronics and Advanced Materials-Rapid Communications. MI 2.37421 H 25 0.422.

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  • -HITSZ.EDU.CN

     ·  2009

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  • Dielectric Response Answer to Many Questions in the

     · Due to the unprecedented rapid increase of their power conversion efficiency hybrid organic–inorganic perovskites CH 3 NH 3 PbX 3 (X = I Br Cl) can potentially revolutionize the world of solar cells. However despite tremendous research activity the origin of the exceptionally large diffusion length of their photogenerated charge carriers that is their low recombination rate remains

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  • Flexible Aligned Carbon Nanotube/Conducting Polymer

     · We present here an approach for preparing a nanostructured "free-standing" ACNT/PEDOT/PVDF membrane electrode that is lightweight flexible highly electroactive and conductive and mechanically robust. It could be directly and easily fabricated into a rechargeable lithium-ion battery as the anode material without using a metal substrate or binder.

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  • Groundbreaking work from the Gong Research Lab aims to

    The advancement was possible due to the use of solution-processed polymeric thin films with high electrical conductivity (Adv. Func. Mater. 2020 and ACS Appl. Mater. Interf. 2020 USPTO 62/962 508). The Gong group is very pleased to develop the state-of-the art "wireless portable light-weight self-charging power packs" and plans to take

    Get Price
  • ResearchOrganic ElectronicsOrganic Electronics

    So Adv. Electr. Mater. 3 (2017). Mater. 3 (2017). Using Ultra-Low Dosages of Electron Acceptor to Reveal the Early Stage Donor-Acceptor Electronic Interactions in Bulk Heterojunction Blends

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  • ----

     · Adv. Energy Mater. 2019 9 13. Ge Li Jin-Yi Li Feng-Shu Yu Quan Xu Tong-Tong Zuo Ya-Xia Yin Yu-Guo Guo Reducing the volume deformation of high capacity SiOx/G/C anode toward industrial application in high energy density lithium-ion

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  • adv mater-SCI

    ADV MATER SCI ENG. Advances in Materials Science and Engineering. MI 7.15725 H 26 1.241. 469 62.5 4.5. . . . ADV MATER OPT ELECTR. advanced materials for optics and electronics.

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  • The rise of graphene Nature Materials

    2 days ago · Graphene is a rapidly rising star on the horizon of materials science and condensed-matter physics. This strictly two-dimensional material exhibits exceptionally high crystal and electronic

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  • A metal–organic framework-derived bifunctional oxygen

     · Adv. Energy Mater. 4 (2014). Article Google Scholar 9. Liang Y. et al. Co3O4 nanocrystals on graphene as a synergistic catalyst for oxygen reduction reaction. Nature Mater. 10 780

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  • ----

     · Adv. Energy Mater. 2019 9 13. Ge Li Jin-Yi Li Feng-Shu Yu Quan Xu Tong-Tong Zuo Ya-Xia Yin Yu-Guo Guo Reducing the volume deformation of high capacity SiOx/G/C anode toward industrial application in high energy density lithium-ion

    Get Price
  • Groundbreaking work from the Gong Research Lab aims to

    The advancement was possible due to the use of solution-processed polymeric thin films with high electrical conductivity (Adv. Func. Mater. 2020 and ACS Appl. Mater. Interf. 2020 USPTO 62/962 508). The Gong group is very pleased to develop the state-of-the art "wireless portable light-weight self-charging power packs" and plans to take

    Get Price
  • A metal–organic framework-derived bifunctional oxygen

     · Adv. Energy Mater. 4 (2014). Article Google Scholar 9. Liang Y. et al. Co3O4 nanocrystals on graphene as a synergistic catalyst for oxygen reduction reaction. Nature Mater. 10 780

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  • Advanced Electronic Materials Vol 5 No 5

     · Triboelectric Nanogenerators Magnetization-Induced Self-Assembling of Bendable Microneedle Arrays for Triboelectric Nanogenerators (Adv. Electron. Mater. 5/2019) A bendable microneedle array (MA) fabricated by a magnetic-induced self-assembling method was employed for triboelectric nanogenerators (TENG).

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  • The 2016 oxide electronic materials and oxide interfaces

     · Klüpfel F et al 2016 Adv. Electr. Mater. 2 . Crossref. Zhou Y and Ramanathan S 2013 Crit. Rev. Solid State 38 286–317. Crossref. Förg B Richter C and Mannhart J 2012 Appl. Phys. Lett. 100 053506. Crossref. Ohtomo A and Hwang H Y 2004 Nature 427 423–6. Crossref. Jany R et al 2014 Adv. Mater.

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  • Advanced Materials Interfaces_(IF)_

     ·  ADV MATER INTERFACES SCI " ADV MATER INTERFACES " " ADV MATER INTERFACES "

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  • Elucidation of the Synergistic Effect of Dopants and

     · A novel SnO2 nanosheet catalyst presents a possible synergistic effect of N dopants and oxygen vacancies on the activity and selectivity for CO2 electroreduction to

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  • Supramolecular cocrystals built through redox-triggered

     · Adv. Electr. Mater. (2020). Download references. Acknowledgements. S.W. acknowledges support from PRESTO-JST through the project "Hyper-nanospace Design Toward Innovative Functionality

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  • Supramolecular cocrystals built through redox-triggered

     · Adv. Electr. Mater. (2020). Download references. Acknowledgements. S.W. acknowledges support from PRESTO-JST through the project "Hyper-nanospace Design Toward Innovative Functionality

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  • Advanced Electronic Materials (ISO4)

    Abbreviation of Advanced Electronic Materials. The ISO4 abbreviation of Advanced Electronic Materials is Adv. Electron. Mater. . It is the standardised abbreviation to be used for abstracting indexing and referencing purposes and meets all criteria of the ISO 4 standard for abbreviating names of

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  • A skin-inspired organic digital mechanoreceptor Science

     ·  Electronic dura mater for long-term multimodal neural interfaces. Science 347 159163 ( 2015 ). doi 10.1126/science. pmid OpenUrl Abstract / FREE Full Text

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  • Advanced Functional MaterialsWiley Online Library

     · A TiO 2 –Fe 3 O 4 PEG Janus chemoreactive nanosonosensitizer is designed and engineered by integrating nanoenzyme Fe 3 O 4 onto the surface of sonosensitizer TiO 2 for bilaterally enhanced sonodynamic (SDT) and chemodynamic (CDT) cancer nanotherapy. The Janus nanostructure and the ultrasound irradiation not only endow the nanosonosensitizers with SDT and CDT effect but

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  • ResearchOrganic ElectronicsOrganic Electronics

    So Adv. Electr. Mater. 3 (2017). Mater. 3 (2017). Using Ultra-Low Dosages of Electron Acceptor to Reveal the Early Stage Donor-Acceptor Electronic Interactions in Bulk Heterojunction Blends

    Get Price
  • Nanowrinkle-patterned flexible woven triboelectric

     · Adv. Mater. 26 (2014) pp. . CrossRef View Record in Scopus Google Scholar. J. Luo Z.L. Wang. Recent advances in triboelectric nanogenerator based self-charging power systems. Energy Storage Mater 23 (2019) pp. . Article Download PDF View Record in

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  • Advanced Materials Interfaces_(IF)_

     ·  ADV MATER INTERFACES SCI " ADV MATER INTERFACES " " ADV MATER INTERFACES "

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