DOI: 10.1002/adma.201104171 link

PMID: 22290721

OpenAlex ID: W2051260837

Category: Biomedical

Title: A Polyferroplatinyne Precursor for the Rapid Fabrication of L1<sub>0</sub>‐FePt‐type Bit Patterned Media by Nanoimprint Lithography

Authors: Qingchen Dong, Ian Manners, Wai‐Yeung Wong, Guijun Li, Cheuk‐Lam Ho, Faisal Mahtab, Chi Wah Leung, Philip W. T. Pong, Kun Liu, Benzhong Tang

Publishing Date: 31-Jan-2012

YCR = 2012  / 135 /  3.40 

Version 1.00            Year       /   Citations  /   Relative

Metric Value Date of Calculation

Citations count

135

30-May-2024

Relative

3.40

04-Aug-2024

Same Authors in Other Papers:

Logic 1 Same First Author: A first author detected by OpenAlex algorithm with possibility of multiple first authors. Good R-values of the same first author(s) as a first author(s) in other papers: no data (not found)

Logic 2 Same Authors in Any Team: Good R-values of the same authors with any team in other papers: 31.26, 18.53, 18.46, 9.46, 9.39, 9.08, 8.84, 8.78, 8.20, 8.16, 7.98, 7.95, 6.51, 6.18, 6.05, ... (213 found, truncated)

Same Authors Duplicates: duplicates across 2 logical groups are not added up in the final calculation, duplicates are shown with asterisk*.

Same Authors Total Good R-values: same authors total good non-duplicated R-values for above 2 logical groups: 213

Article Expected CPY (Citations per Year): 3.30 Expected CPY Help

Article Actual CPY: 11.25 Actual CPY Help

Article Co-Citation FCR (Field Citation Rate): 4.88 FCR Help

Article Co-Citation Network Size: 11465 Co-Citation Network Size Help

Article Topics: Nanoscale Lithographic Patterning Techniques, Magnetic Skyrmions and Spintronics, Electron Beam Lithography: Resolution and Applications Topics help

Article Keywords: Nanolithography Techniques, Patterning Materials, Nanoscale Patterning, Nanolithography, Nanofabrication Keywords Help

Journal: Advanced materials

Journal IF-ycr: 12.567 Journal IF-ycr Help

Journal short code: NA

Journal ISSN: 0935-9648

Journal OA-ID: 99352657

Help

Expected CPY Help: Predicted citations per year for this article, derived from its Field Citation Rate (FCR) using a benchmark regression of NIH-funded papers. Values above actual CPY indicate under-performance; below indicate over-performance. Used as the denominator of the Relative Citation Ratio.

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Actual CPY Help: Average yearly citations the article has received from publication through the current year, adjusted for partial years. Used as the numerator of the Relative Citation Ratio.

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FCR Help: Mean journal citation rate for all papers in the article's co-citation network. For each network paper we substitute its journal’s impact factor (calculated from open data) as a proxy for citations per year, then average these values. This captures the citation intensity of the article's immediate research field and forms the basis for computing expected CPY.

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Co-Citation Network Size Help: Number of unique papers co-cited with this article by its citing papers; larger networks yield more stable field estimates when calculating FCR and expected CPY.

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Topics Help: OpenAlex assigns topics to each paper with an AI model that considers the title, abstract, journal, and citation links. Tags are chosen from about 4,500 research areas, and the highest-confidence tag becomes the paper's primary topic. Every topic sits in a hierarchy of domain, field, and subfield, so you can see exactly where the work fits in the wider map of science.

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Keywords Help: Keywords are generated automatically from the paper's assigned topics. The OpenAlex system selects candidate terms, then keeps up to five that match closely with the title or abstract. These keywords highlight specific concepts or methods and give a quick complement to the broader topic tags.

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Journal IF-ycr Help: Journal IF-ycr is a two-year impact factor recalculated from OpenAlex's open citation data. For a given journal and year Y, we:

  1. Count citations made in year Y by any paper to items that the journal published in years Y-1 and Y-2 (excluding the current year).
  2. Divide that citation count by the number of articles the journal published in those same two years.
This yields an impact factor analogue built entirely from open data, updated annually and used in the YCR workflow.

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