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:

Strategies to improve the mass transfer in the CO2 capture process using immobilized carbonic anhydrase
Xing Zhu, Chenxi Du, Bo Gao, et al.
Journal of Environmental Management (2023) Vol. 332, pp. 117370-117370
Closed Access | Times Cited: 20

Showing 20 citing articles:

Recent Progress in Enzyme Immobilization to Metal–Organic Frameworks to Enhance the CO2 Conversion Efficiency
Yiwen Cao, Pengyan Yang, Rui Zhao, et al.
Molecules (2025) Vol. 30, Iss. 2, pp. 251-251
Open Access | Times Cited: 3

Mass Transfer-Reaction Modeling of CO2 Capture Mediated by Immobilized Carbonic Anhydrase Enzyme on Multiscale Supporting Structures
Yao Shen, Peijing Shao, Jingkai Zhao, et al.
Environmental Science & Technology (2025)
Closed Access | Times Cited: 2

From green to circular chemistry paved by biocatalysis
Pedro Lozano, Eduardo García‐Verdugo
Green Chemistry (2023) Vol. 25, Iss. 18, pp. 7041-7057
Open Access | Times Cited: 29

CO2 hydrogenation to formate by immobilized formate dehydrogenase: Challenges and opportunities
Shadeera Rouf, Yaser E. Greish, Bart Van der Bruggen, et al.
International Journal of Hydrogen Energy (2025)
Closed Access | Times Cited: 1

Direct Biocatalytic Processes for CO2 Capture as a Green Tool to Produce Value-Added Chemicals
Rocío Villa, Susana Nieto, Antonio Donaire, et al.
Molecules (2023) Vol. 28, Iss. 14, pp. 5520-5520
Open Access | Times Cited: 16

A multienzyme system immobilized on surface-modified metal–organic framework for enhanced CO2 hydrogenation
Shadeera Rouf, Yaser E. Greish, Bart Van der Bruggen, et al.
Carbon Resources Conversion (2024) Vol. 7, Iss. 4, pp. 100234-100234
Open Access | Times Cited: 5

The potential of RuBisCO in CO2 capture and utilization
Kamyll Dawn Cocon, Patricia Luis
Progress in Energy and Combustion Science (2024) Vol. 105, pp. 101184-101184
Closed Access | Times Cited: 4

Preparation of defective UiO-67 for CA immobilization to improve the ability of CO2 capture and conversion
Rui Zhao, Wenhui Yang, Pengyan Yang, et al.
Biochemical Engineering Journal (2025), pp. 109661-109661
Closed Access

In situ NADH regeneration coupled to enzymatic CO2 reduction: from fundamental concepts to recent advances
Neha Gupta, Arpita Sarkar, Soumya Kanti Biswas
Journal of environmental chemical engineering (2025), pp. 116657-116657
Closed Access

Simulation Study of Carbonic Anhydrase Adsorption on Self-Assembled Monolayers
Hao Tang, Yun Xie, Zhou Jian
Langmuir (2025)
Closed Access

A venturi reactor with an excellent mass transfer performance for carbon dioxide capture
Huang Ren, Mingqi Lin, Bobing Tian, et al.
Journal of Environmental Management (2024) Vol. 360, pp. 121144-121144
Closed Access | Times Cited: 2

Co-precipitation synthesis of carbonic anhydrase-embedded magnetic zeolitic imidazolate framework-8 nanocomposite enzyme for enzymatic CO2 conversion and utilization in facilitating uranium extraction
Zhao Cui, Ting Li, Jing Sun, et al.
Separation and Purification Technology (2024) Vol. 351, pp. 128152-128152
Closed Access | Times Cited: 2

Carbonic anhydrase-embedded ZIF-8 membrane reactor with improved the recycling and stability for efficient CO2 capture
Ruirui Wang, Yuyan Chang, Junjie Li, et al.
International Journal of Biological Macromolecules (2024) Vol. 280, pp. 136083-136083
Closed Access | Times Cited: 2

Bioactive Covalent Organic Framework Capsules for Lactate Synthesis
Xiangxuan Meng, Jiafu Shi, Zhenhua Wu, et al.
ACS Sustainable Chemistry & Engineering (2023) Vol. 11, Iss. 25, pp. 9349-9358
Closed Access | Times Cited: 6

Enhancing carbon capture efficiency with a large-sized bionic jellyfish-carbonic anhydrase complex
Xing Zhu, Chenxi Du, Bo Gao, et al.
Green Chemistry (2023) Vol. 25, Iss. 23, pp. 9926-9933
Closed Access | Times Cited: 5

Fabrication of polyphenol-etched amino acid-modified ZIF-8 and their carbonic anhydrase-like catalytic activity
Qun Zhang, Haibin Hu, Pengwei Fang, et al.
Colloids and Surfaces A Physicochemical and Engineering Aspects (2023) Vol. 682, pp. 132882-132882
Closed Access | Times Cited: 5

Carbonic anhydrase immobilized on Zn(II)-geopolymer membrane for CO2 capture
Baozhong Zhao, Xingfa Deng, Yan He, et al.
Biochemical Engineering Journal (2024) Vol. 208, pp. 109364-109364
Closed Access | Times Cited: 1

Reversible immobilization of enzyme on the “deck” for high-efficiency heterogeneous catalysis
Xing Zhu, Zuoyuan Lv, Longfang Ren, et al.
Research Square (Research Square) (2024)
Open Access

Reversible immobilization of enzyme on the “deck” for high-efficiency heterogeneous catalysis
Xing Zhu, Zuoyuan Lv, Longfang Ren, et al.
Cellulose (2024)
Closed Access

Application of Carbon Nanomaterials in CO 2 Capture and Reduction
R. Sanjeevi, J. Anuradh, Sandeep Kumar Tripathi
(2024), pp. 447-467
Closed Access

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