
Bao Li
Articles
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Sep 25, 2024 |
imedpub.com | Bao Li
Bao Li* Department of Agriculture, University of Sydney, Sydney, Australia *Corresponding Author: Bao Li Department of Agriculture, University of Sydney, Sydney, Australia, E-mail: [email protected] Received date: August 26, 2024, Manuscript No. IPJPSAR-24-19144; Editor assigned date: August 28, 2024, PreQC No. IPJPSAR-24-19144 (PQ); Reviewed date: September 11, 2024, QC No. IPJPSAR-24-19144; Revised date: September 18, 2024, Manuscript No. IPJPSAR-24-19144 (R); Published date: September 25, 2024,...
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Jun 20, 2024 |
pubs.rsc.org | Zi-tong Chen |Hao-Ran Ji |Yuan Chen |Bao Li
D-A-D-type Di-lophine Derivative-Based Photoactive Metal-Organic Framework: Fluorescence Sensing of UO22+ and Photochromic Behavior Cadmium(II)-based Metal-Organic Frameworks (MOFs) have been widely investigated for fluorescence sensing due to their chemical stability and tunable optical properties. However, how to precisely improve their selectivity and sensitivity to the target analytes are key issues to be addressed.
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Jun 6, 2024 |
mdpi.com | Bao Li |Dan Su
This is an early access version, the complete PDF, HTML, and XML versions will be available soon. Open AccessArticlebyBao LiSciProfilesScilitPreprints.orgGoogle Scholar * and Dan SuSciProfilesScilitPreprints.orgGoogle Scholar College of Mining Engineering, Taiyuan University of Technology, Taiyuan 030024, China*Author to whom correspondence should be addressed.
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Jun 7, 2023 |
frontiersin.org | Tommaso Gori |Bao Li |Lin Li
1. Introduction Cardiovascular and cerebrovascular diseases remain the dominant causes of death (1). Cardiovascular disease killed 17.9 million people worldwide in 2016, according to the World Health Organization, of which about 34% were due to coronary heart disease (CHD). An estimated 23.3 million cardiovascular deaths will occur in 2030 (2, 3). CHD seriously harms human health and aggravates the public health burden with its extremely high mortality (1).
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Feb 22, 2023 |
nature.com | Guohua Zhang |Xiaofei Chen |Bao Li
AbstractSynthetic framework materials have been cherished as appealing candidates for separation membranes in daily life and industry, while the challenges still remain in precise control of aperture distribution and separation threshold, mild processing methods, and extensive application aspects. Here, we show a two-dimensional (2D) processible supramolecular framework (SF) by integrating directional organic host-guest motifs and inorganic functional polyanionic clusters.
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