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Metal-Organic Frameworks (MOFs): Recent Advances In

  • E-mail address: [email protected] (Saud-uz-Zafar), National Center for Nanoscience and Technology (NCNST) No.11 ZhongGuanCun BeiYiTiao, 100190 Beijing, P.R
  • China, Tel.: +86 132 4026 2677 Chemical Methodologies 3(2019) 283-305   DA: 18 PA: 50 MOZ Rank: 68

Saud ZAFAR PhD Student Master Of Science National

  • Saud-uz-Zafar currently working at the Department of Chemistry, National Center for Nanoscience and Technology (NCNST), Beijing, China
  • Current research is on the fabrication and stability of   DA: 20 PA: 19 MOZ Rank: 40

Sequential Molecular Doping Of Non-fullerene Organic Solar

  • While molecular doping has shown the capability to modulate the optoelectrical properties in conjugated polymers or small molecules, some of the widely used dopants (e.g
  • F4-TCNQ) tend to lead to rapid aggregation in doped host films, forming clusters or large particles which unfavorably impair the morphology and device performance in organic solar cells (OSCs).   DA: 12 PA: 45 MOZ Rank: 59

Polydopamine/ZnO Electron Transport Layers Enhance Charge

  • The cathode interlayer plays a key role in the photovoltaic performance in organic solar cells
  • In this work, we demonstrate that polydopamine/ZnO can be used as efficient electron transport layers (ETL) in inverted non-fullerene organic solar cells
  • In comparison to the devices with the ZnO ETL, the power c   DA: 12 PA: 45 MOZ Rank: 60

Reduced Nonradiative Energy Loss Caused By Aggregation Of

  • E‐mail: [email protected], [email protected] Search for more papers by this author
  • State Key Laboratory of Polymer, Physics and Chemistry, Institute of Chemistry, Chinese Academy of Sciences, Beijing, 100190 China
  • Search for more papers by this author   DA: 23 PA: 31 MOZ Rank: 58

Inverted Non-fullerene Organic Solar Cells Polydopamine

Polydopamine/ZnO electron transport layers enhance charge extraction in inverted non-fullerene organic solar cells Nafees Ahmad,ad Xuning Zhang,ab Yang Shuo, ad Dongyang Zhang,ab Wang Jianqiu,a Saud uz Zafar,ad Li Yanxun, ad Yuan Zhang, b, Sabir Hussain, ad Zhihai Cheng, c Anbu Kumaresan,ad Huiqiong Zhou,a,* aCAS Key Laboratory of Nanosystem and Hierarchical Fabrication, CAS Center for …   DA: 11 PA: 42 MOZ Rank: 58

Asian Journal Of Green Chemistry

  • Corresponding author, email: [email protected] (O
  • Oluwatomisin Funmilayo), [email protected] (S
  • Asian Journal of Green Chemistry 3 (2019) 153-168 Asian Journal of Green Chemistry Journal homepage: Review Article Perovskite photovoltaic nanostructured materials: device   DA: 19 PA: 50 MOZ Rank: 75

Unraveling The Morphology In Solution-Processed Pseudo

  • The conventional bulk heterojunction (BHJ) structure is widely used for fabricating high-performance organic solar cells (OSCs) due to the nanometer-scale phase separation of the donor/acceptor component
  • However, the elaborate control of the BHJ morphology is difficult to carry out because the morphology evolution is such a complicated process
  • The compatibility requirement of materials in   DA: 12 PA: 27 MOZ Rank: 46

90+ "Syed Saud" Profiles LinkedIn

  • View the profiles of professionals named "Syed Saud" on LinkedIn
  • There are 90+ professionals named "Syed Saud", who use LinkedIn to exchange information, ideas, and opportunities.   DA: 16 PA: 18 MOZ Rank: 42

Bank Reconciliation Audit Observation Reply

  • Bank reconciliation audit observation reply
  • Saud Uz Zaman (DM) 15 February 2019
  • Saud Uz Zaman DM 21 points Follow
  • Recently our internal audit give me observation on bank reconciliation   DA: 19 PA: 50 MOZ Rank: 78

Review Article Polymer-based Material For Lithium-Ion

  • *Corresponding author: Hitler Louis, Email: [email protected] Asian Journal of Nanoscience and Materials, 2018, 2(1), 1-26
  • Polymer-based Material for Lithium-Ion Batteries: Material Engineering, Structure, Device Performance and Challenges Mutiat Salamia*, Hitler Louisb,c,, Saud-uz-Zafarc, Oluwatobi O   DA: 17 PA: 50 MOZ Rank: 77

Regulating Bulk‐Heterojunction Molecular Orientations   DA: 23 PA: 27 MOZ Rank: 61

Solvent Additives: Key Morphology‐Directing Agents For

E‐mail: [email protected], [email protected] Search for more papers by this author Caitlin McDowell Center for Polymers and Organic Solids, Departments of Chemistry and Biochemistry and Materials, University of California, Santa Barbara, Santa Barbara, CA, 93106 USA   DA: 23 PA: 31 MOZ Rank: 66

Molecular Dispersion Enhances Photovoltaic Efficiency And

  • In comparison to widely adopted bulk heterojunction (BHJ) structures for organic solar cells (OSC), exploiting the sequential deposition to form planar heterojunction (PHJ) structures enables to realize the favorable vertical phase separation to facilitate charge extraction and reduce charge recombination in OSCs
  • However, effective tunings on the power conversion efficiency (PCE) in PHJ …   DA: 17 PA: 34 MOZ Rank: 64


  • Volume 9, Number 1, January – March 2014   DA: 12 PA: 47 MOZ Rank: 73

Molecular Orientation Of Polymer Acceptor Dominates Open

  • Low open-circuit voltage (Voc) induced by energy loss in organic solar cells is considered to be one of the most influencing factors limiting device performance, in which morphology of the active layer plays a crucial role in determining energy loss
  • By employing a bilayer structure of the P3HT:N2200 all-polymer system, we have identified the isolated impact of a molecular packing structure on   DA: 12 PA: 34 MOZ Rank: 61

Increasing Quantum Efficiency Of Polymer Solar Cells With

  • Optimizing the photovoltaic processes directly by electric technique attracts the exploration of molecular doping in organic photovoltaics (OPVs)
  • However, the inappropriate and inhomogeneous dopant distribution in the bulk heterojunction (BHJ) film inhibits the performance improvement and mechanism understanding in doped OPVs
  • A strategy to solve these critical problems is reported here   DA: 12 PA: 34 MOZ Rank: 62

Hierarchical Morphology Stability Under Multiple Stresses

  • Improving device stability is an imperative area of realizing commercial utilization for organic solar cells (OSCs)
  • Morphology evolutions of solution-processable active layers have proved to be responsible for ubiquitous device degradation due to their profound impacts on charge generation, transport, and extraction
  • This Perspective aims to understand and promote device stability in terms of   DA: 12 PA: 34 MOZ Rank: 63

Temperature‐Dependent Aggregation Donor Polymers Enable

  • E‐mail: [email protected], [email protected] Search for more papers by this author
  • Jiyu Zhou, Saud-Uz Zafar, Huiqiong Zhou, Yuan Zhang, Sequential molecular doping of non-fullerene organic solar cells without hole transport layers, Journal of Materials Chemistry C, 10.1039/C9TC04969J, (2019)   DA: 23 PA: 27 MOZ Rank: 68

Vertical Stratification Engineering For Organic Bulk

  • High-efficiency organic solar cells (OSCs) can be produced through optimization of component molecular design, coupled with interfacial engineering and control of active layer morphology
  • However, vertical stratification of the bulk-heterojunction (BHJ), a spontaneous activity that occurs during the drying process, remains an intricate problem yet to be solved   DA: 12 PA: 28 MOZ Rank: 59

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