Asif Ali

831 total citations
37 papers, 685 citations indexed

About

Asif Ali is a scholar working on Electrical and Electronic Engineering, Materials Chemistry and Polymers and Plastics. According to data from OpenAlex, Asif Ali has authored 37 papers receiving a total of 685 indexed citations (citations by other indexed papers that have themselves been cited), including 23 papers in Electrical and Electronic Engineering, 11 papers in Materials Chemistry and 7 papers in Polymers and Plastics. Recurrent topics in Asif Ali's work include Advanced Memory and Neural Computing (11 papers), 2D Materials and Applications (8 papers) and Transition Metal Oxide Nanomaterials (6 papers). Asif Ali is often cited by papers focused on Advanced Memory and Neural Computing (11 papers), 2D Materials and Applications (8 papers) and Transition Metal Oxide Nanomaterials (6 papers). Asif Ali collaborates with scholars based in South Korea, Pakistan and Singapore. Asif Ali's co-authors include Jongwan Jung, Sajjad Hussain, Syed Hassan Abbas Jaffery, Haider Abbas, Muhammad Hussain, Changhwan Choi, Yongho Seo, Sikandar Aftab, Nguyen Dinh Cong and V. Souza Machado and has published in prestigious journals such as Physical Review Letters, Applied Physics Letters and Scientific Reports.

In The Last Decade

Asif Ali

36 papers receiving 666 citations

Peers — A (Enhanced Table)

Peers by citation overlap · career bar shows stage (early→late) cites · hero ref

Name h Career Trend Papers Cites
Asif Ali South Korea 16 473 322 96 90 68 37 685
J. Radhakrishnan India 17 342 0.7× 203 0.6× 62 0.6× 355 3.9× 46 0.7× 64 902
P. A. Eschbach United States 8 432 0.9× 216 0.7× 173 1.8× 88 1.0× 30 0.4× 19 668
Myo Than Htay Japan 20 745 1.6× 540 1.7× 83 0.9× 116 1.3× 96 1.4× 38 892
Chuanyu Han China 17 783 1.7× 260 0.8× 65 0.7× 155 1.7× 183 2.7× 93 938
Zijing Zhao China 18 426 0.9× 491 1.5× 17 0.2× 48 0.5× 202 3.0× 54 919
П. А. Форш Russia 14 523 1.1× 338 1.0× 94 1.0× 122 1.4× 24 0.4× 87 636
E. Verrelli Greece 12 302 0.6× 129 0.4× 88 0.9× 79 0.9× 39 0.6× 33 399

Countries citing papers authored by Asif Ali

Since Specialization
Citations

This map shows the geographic impact of Asif Ali's research. It shows the number of citations coming from papers published by authors working in each country. You can also color the map by specialization and compare the number of citations received by Asif Ali with the expected number of citations based on a country's size and research output (numbers larger than one mean the country cites Asif Ali more than expected).

Fields of papers citing papers by Asif Ali

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

This network shows the impact of papers produced by Asif Ali. Nodes represent research fields, and links connect fields that are likely to share authors. Colored nodes show fields that tend to cite the papers produced by Asif Ali. The network helps show where Asif Ali may publish in the future.

Co-authorship network of co-authors of Asif Ali

This figure shows the co-authorship network connecting the top 25 collaborators of Asif Ali. A scholar is included among the top collaborators of Asif Ali based on the total number of citations received by their joint publications. Widths of edges represent the number of papers authors have co-authored together. Node borders signify the number of papers an author published with Asif Ali. Asif Ali is excluded from the visualization to improve readability, since they are connected to all nodes in the network.

All Works

20 of 20 papers shown
3.
Abbas, Haider, et al.. (2024). Emulation of short-term and long-term synaptic plasticity with high uniformity in chalcogenide-based diffusive memristor device for neuromorphic applications. Journal of Material Science and Technology. 216. 99–107. 5 indexed citations
4.
Bilal, Muhammad, Habib Ul Hassan, Naseem Rafiq, et al.. (2023). Biological Magnification of Microplastics: A Look at the Induced Reproductive Toxicity from Simple Invertebrates to Complex Vertebrates. Water. 15(15). 2831–2831. 8 indexed citations
5.
Ali, Asif, Hafiz Saad Khaliq, Jehan Akbar, et al.. (2023). Dielectric chiral metasurfaces for enhanced circular dichroism spectroscopy at near infrared regime. RSC Advances. 13(30). 20958–20965. 11 indexed citations
6.
Ali, Asif, et al.. (2023). Production of Sodium Bicarbonate with Saline Brine and CO2 Co-Utilization: Comparing Modified Solvay Approaches. Crystals. 13(3). 470–470. 11 indexed citations
7.
Chaudhary, Neelam, et al.. (2023). Effect of Fluorescent-Producing Rhizobacteria on Cereal Growth Through Siderophore Exertion. 4(2). 601–611. 3 indexed citations
8.
Ali, Asif, et al.. (2023). GeS conducting-bridge resistive memory device with IGZO buffer layer for highly uniform and repeatable switching. Applied Physics Letters. 122(20). 3 indexed citations
9.
Hussain, Muhammad, Asif Ali, Syed Hassan Abbas Jaffery, et al.. (2022). Self-biased wavelength selective photodetection in an n-IGZO/p-GeSe heterostructure by polarity flipping. Nanoscale. 14(30). 10910–10917. 16 indexed citations
10.
Jaffery, Syed Hassan Abbas, Nguyen Dinh Cong, Asif Ali, et al.. (2022). Schottky barrier height modulation and photoconductivity in a vertical graphene/ReSe2 vdW p-n heterojunction barristor. Journal of Materials Research and Technology. 17. 2796–2806. 8 indexed citations
11.
Hicks, Andrea, Pratik P. Dholabhai, Asif Ali, & Rafael M. Santos. (2022). Nutrient-doped synthetic silicates for enhanced weathering, remineralization and fertilization on agricultural lands of global cold regions – A perspective on the research ahead. iScience. 25(12). 105556–105556. 4 indexed citations
12.
Ali, Asif, Soyoung Kim, Muhammad Hussain, et al.. (2021). Deep-Ultraviolet (DUV)-Induced Doping in Single Channel Graphene for Pn-Junction. Nanomaterials. 11(11). 3003–3003. 3 indexed citations
13.
Hussain, Muhammad, Il‐Suk Kang, Kyeong-Keun Choi, et al.. (2021). Highly Fast Response of Pd/Ta2O5/SiC and Pd/Ta2O5/Si Schottky Diode-Based Hydrogen Sensors. Sensors. 21(4). 1042–1042. 11 indexed citations
14.
Ali, Asif, Haider Abbas, Muhammad Hussain, et al.. (2021). Thickness-dependent monochalcogenide GeSe-based CBRAM for memory and artificial electronic synapses. Nano Research. 15(3). 2263–2277. 37 indexed citations
15.
Hussain, Muhammad, Sikandar Aftab, Syed Hassan Abbas Jaffery, et al.. (2020). Asymmetric electrode incorporated 2D GeSe for self-biased and efficient photodetection. Scientific Reports. 10(1). 9374–9374. 52 indexed citations
16.
Jaffery, Syed Hassan Abbas, Ghulam Dastgeer, Muhammad Hussain, et al.. (2020). Thickness‐Dependent, Gate‐Tunable Rectification and Highly Sensitive Photovoltaic Behavior of Heterostructured GeSe/WS2 p–n Diode. Advanced Materials Interfaces. 7(23). 35 indexed citations
17.
Abbas, Haider, Asif Ali, Jongwan Jung, et al.. (2019). Reversible transition of volatile to non-volatile resistive switching and compliance current-dependent multistate switching in IGZO/MnO RRAM devices. Applied Physics Letters. 114(9). 70 indexed citations
18.
Liu, Hailing, Sajjad Hussain, Asif Ali, et al.. (2018). A vertical WSe2–MoSe2 p–n heterostructure with tunable gate rectification. RSC Advances. 8(45). 25514–25518. 31 indexed citations
19.
Lü, Jing, Lei Liang, Oleksandr Zheliuk, et al.. (2017). Inducing and Manipulating Heteroelectronic States in a Single MoS2 Thin Flake. Physical Review Letters. 119(14). 147002–147002. 15 indexed citations
20.
Tóth, Ágota, Dezső Horváth, Asif Ali, et al.. (2009). Precipitation Pattern Formation in the Copper(II) Oxalate System with Gravity Flow and Axial Symmetry. The Journal of Physical Chemistry A. 113(29). 8243–8248. 24 indexed citations

Rankless uses publication and citation data sourced from OpenAlex, an open and comprehensive bibliographic database. While OpenAlex provides broad and valuable coverage of the global research landscape, it—like all bibliographic datasets—has inherent limitations. These include incomplete records, variations in author disambiguation, differences in journal indexing, and delays in data updates. As a result, some metrics and network relationships displayed in Rankless may not fully capture the entirety of a scholar's output or impact.

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