OpenAlex Citation Counts

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OpenAlex is a bibliographic catalogue of scientific papers, authors and institutions accessible in open access mode, named after the Library of Alexandria. It's citation coverage is excellent and I hope you will find utility in this listing of citing articles!

If you click the article title, you'll navigate to the article, as listed in CrossRef. If you click the Open Access links, you'll navigate to the "best Open Access location". Clicking the citation count will open this listing for that article. Lastly at the bottom of the page, you'll find basic pagination options.

Requested Article:

Chiral-induced spin selectivity enables a room-temperature spin light-emitting diode
Young‐Hoon Kim, Yaxin Zhai, Haipeng Lu, et al.
Science (2021) Vol. 371, Iss. 6534, pp. 1129-1133
Closed Access | Times Cited: 519

Showing 1-25 of 519 citing articles:

Perovskite light-emitting diodes
Azhar Fakharuddin, Mahesh K. Gangishetty, Mojtaba Abdi‐Jalebi, et al.
Nature Electronics (2022) Vol. 5, Iss. 4, pp. 203-216
Closed Access | Times Cited: 518

Chiral emission from resonant metasurfaces
Xudong Zhang, Yilin Liu, Jiecai Han, et al.
Science (2022) Vol. 377, Iss. 6611, pp. 1215-1218
Closed Access | Times Cited: 310

Advances in the Application of Perovskite Materials
Lixiu Zhang, Luyao Mei, Kaiyang Wang, et al.
Nano-Micro Letters (2023) Vol. 15, Iss. 1
Open Access | Times Cited: 193

Liquid crystal-templated chiral nanomaterials: from chiral plasmonics to circularly polarized luminescence
Xuan Zhang, Yiyi Xu, Cristian Valenzuela, et al.
Light Science & Applications (2022) Vol. 11, Iss. 1
Open Access | Times Cited: 172

Exploiting the full advantages of colloidal perovskite nanocrystals for large-area efficient light-emitting diodes
Young‐Hoon Kim, Jinwoo Park, Sungjin Kim, et al.
Nature Nanotechnology (2022) Vol. 17, Iss. 6, pp. 590-597
Closed Access | Times Cited: 148

Chiral molecular intercalation superlattices
Qi Qian, Huaying Ren, Jingyuan Zhou, et al.
Nature (2022) Vol. 606, Iss. 7916, pp. 902-908
Closed Access | Times Cited: 146

Suppressing phase disproportionation in quasi-2D perovskite light-emitting diodes
Kang Wang, Zih‐Yu Lin, Zihan Zhang, et al.
Nature Communications (2023) Vol. 14, Iss. 1
Open Access | Times Cited: 141

A Chirality-Based Quantum Leap
Clarice D. Aiello, John M. Abendroth, Muneer Abbas, et al.
ACS Nano (2022) Vol. 16, Iss. 4, pp. 4989-5035
Open Access | Times Cited: 131

Hierarchical self-assembly into chiral nanostructures
Yutao Sang, Minghua Liu
Chemical Science (2021) Vol. 13, Iss. 3, pp. 633-656
Open Access | Times Cited: 124

Circular Polarized Light Emission in Chiral Inorganic Nanomaterials
Shuang Jiang, Nicholas A. Kotov
Advanced Materials (2022) Vol. 35, Iss. 34
Open Access | Times Cited: 122

The spin selectivity effect in chiral materials
David H. Waldeck, Ron Naaman, Yossi Paltiel
APL Materials (2021) Vol. 9, Iss. 4
Open Access | Times Cited: 121

Materials for chiral light control
Jeanne Crassous, Matthew J. Fuchter, Danna E. Freedman, et al.
Nature Reviews Materials (2023) Vol. 8, Iss. 6, pp. 365-371
Closed Access | Times Cited: 113

Chiral Induced Spin Selectivity
Brian P. Bloom, Yossi Paltiel, Ron Naaman, et al.
Chemical Reviews (2024) Vol. 124, Iss. 4, pp. 1950-1991
Open Access | Times Cited: 106

Synergy of 3D and 2D Perovskites for Durable, Efficient Solar Cells and Beyond
Isaac Metcalf, Siraj Sidhik, Hao Zhang, et al.
Chemical Reviews (2023) Vol. 123, Iss. 15, pp. 9565-9652
Open Access | Times Cited: 105

Control of light, spin and charge with chiral metal halide semiconductors
Haipeng Lu, Z. Valy Vardeny, Matthew C. Beard
Nature Reviews Chemistry (2022) Vol. 6, Iss. 7, pp. 470-485
Open Access | Times Cited: 104

Core–Shell Three-Dimensional Perovskite Nanocrystals with Chiral-Induced Spin Selectivity for Room-Temperature Spin Light-Emitting Diodes
Chuying Ye, Jiawei Jiang, Shaolan Zou, et al.
Journal of the American Chemical Society (2022) Vol. 144, Iss. 22, pp. 9707-9714
Closed Access | Times Cited: 103

Flexible Perovskite Solar Cells: From Materials and Device Architectures to Applications
Yuanji Gao, Keqing Huang, Caoyu Long, et al.
ACS Energy Letters (2022) Vol. 7, Iss. 4, pp. 1412-1445
Closed Access | Times Cited: 94

Mutual Monomer Orientation To Bias the Supramolecular Polymerization of [6]Helicenes and the Resulting Circularly Polarized Light and Spin Filtering Properties
Rafael Rodríguez, Cristina Naranjo, Anil Kumar, et al.
Journal of the American Chemical Society (2022) Vol. 144, Iss. 17, pp. 7709-7719
Open Access | Times Cited: 93

Perovskite metasurfaces with large superstructural chirality
Guankui Long, Giorgio Adamo, Jingyi Tian, et al.
Nature Communications (2022) Vol. 13, Iss. 1
Open Access | Times Cited: 90

Circularly polarized perovskite luminescence with dissymmetry factor up to 1.9 by soft helix bilayer device
Shuaijun Liu, Xuan Liu, Yongzhen Wu, et al.
Matter (2022) Vol. 5, Iss. 7, pp. 2319-2333
Open Access | Times Cited: 88

Anomalous circularly polarized light emission in organic light-emitting diodes caused by orbital–momentum locking
Li Wan, Yizhou Liu, Matthew J. Fuchter, et al.
Nature Photonics (2022) Vol. 17, Iss. 2, pp. 193-199
Open Access | Times Cited: 86

Multifunctional Chiral 2D Lead Halide Perovskites with Circularly Polarized Photoluminescence and Piezoelectric Energy Harvesting Properties
Yan Qin, Fei‐Fei Gao, Shuhang Qian, et al.
ACS Nano (2022) Vol. 16, Iss. 2, pp. 3221-3230
Closed Access | Times Cited: 81

Carbon Dots for Electroluminescent Light‐Emitting Diodes: Recent Progress and Future Prospects
Yuxin Shi, Wen Su, Fanglong Yuan, et al.
Advanced Materials (2023) Vol. 35, Iss. 44
Closed Access | Times Cited: 80

Amplified Circularly Polarized Electroluminescence Behavior Triggered by Helical Nanofibers from Chiral Co‐assembly Polymers
Zhongxing Geng, Yuxia Zhang, Yu Zhang, et al.
Angewandte Chemie International Edition (2022) Vol. 61, Iss. 23
Closed Access | Times Cited: 75

Chiral-phonon-activated spin Seebeck effect
Kyunghoon Kim, Eric Vetter, Liang Yan, et al.
Nature Materials (2023) Vol. 22, Iss. 3, pp. 322-328
Closed Access | Times Cited: 75

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