scholarly journals Reversible Bonding of Aromatic Thermosetting Copolyesters for In‐Space Assembly

2019 ◽  
Vol 304 (4) ◽  
pp. 1800647 ◽  
Author(s):  
Jacob L. Meyer ◽  
Mete Bakir ◽  
Pixiang Lan ◽  
James Economy ◽  
Iwona Jasiuk ◽  
...  
Keyword(s):  
2017 ◽  
Vol 427 ◽  
pp. 306-313 ◽  
Author(s):  
David Royet ◽  
Yoann Hériveaux ◽  
Julien Marchalot ◽  
Riccardo Scorretti ◽  
André Dias ◽  
...  

2013 ◽  
Vol 139 (18) ◽  
pp. 184901 ◽  
Author(s):  
Xu Zhang ◽  
Liquan Wang ◽  
Tao Jiang ◽  
Jiaping Lin

2009 ◽  
Vol 130 (8) ◽  
pp. 084111 ◽  
Author(s):  
Paweł Szarek ◽  
Kousuke Urakami ◽  
Chenggang Zhou ◽  
Hansong Cheng ◽  
Akitomo Tachibana

2015 ◽  
Vol 10 (5) ◽  
pp. 229-232 ◽  
Author(s):  
Hong Ha Cao ◽  
Thi Hong Nhung Dinh ◽  
Feriel S. Hamdi ◽  
Magdalèna Couty ◽  
Emile Martincic ◽  
...  

Author(s):  
Jacob L. Meyer ◽  
Pixiang Lan ◽  
Siyuan Pang ◽  
Kenneth Chui ◽  
James Economy ◽  
...  

2019 ◽  
Vol 26 (37) ◽  
pp. 6797-6816 ◽  
Author(s):  
Ji Hyun Ryu ◽  
Gyeong Jin Lee ◽  
Yu-Ru V. Shih ◽  
Tae-il Kim ◽  
Shyni Varghese

Background: Phenylboronic acid-polymers (PBA-polymers) have attracted tremendous attention as potential stimuli-responsive materials with applications in drug-delivery depots, scaffolds for tissue engineering, HIV barriers, and biomolecule-detecting/sensing platforms. The unique aspect of PBA-polymers is their interactions with diols, which result in reversible, covalent bond formation. This very nature of reversible bonding between boronic acids and diols has been fundamental to their applications in the biomedical area. Methods: We have searched peer-reviewed articles including reviews from Scopus, PubMed, and Google Scholar with a focus on the 1) chemistry of PBA, 2) synthesis of PBA-polymers, and 3) their biomedical applications. Results: We have summarized approximately 179 papers in this review. Most of the applications described in this review are focused on the unique ability of PBA molecules to interact with diol molecules and the dynamic nature of the resulting boronate esters. The strong sensitivity of boronate ester groups towards the surrounding pH also makes these molecules stimuli-responsive. In addition, we also discuss how the re-arrangement of the dynamic boronate ester bonds renders PBA-based materials with other unique features such as self-healing and shear thinning. Conclusion: The presence of PBA in the polymer chain can render it with diverse functions/ relativities without changing their intrinsic properties. In this review, we discuss the development of PBA polymers with diverse functions and their biomedical applications with a specific focus on the dynamic nature of boronate ester groups.


2017 ◽  
Vol 8 (27) ◽  
pp. 4038-4042 ◽  
Author(s):  
Siham Telitel ◽  
Eva Blasco ◽  
Lukas D. Bangert ◽  
Felix H. Schacher ◽  
Anja S. Goldmann ◽  
...  

We introduce a synthetic avenue for the completely photoreversible formation of block copolymers based on anthracene chemistry.


2016 ◽  
Vol 819 ◽  
pp. 351-355
Author(s):  
Ummikalsom Abidin ◽  
Majlis Burhanuddin Yeop ◽  
Jumril Yunas

Microfluidics platform offers a great advantage in bio-sensing and clinical diagnostics miniaturization. The requirement of inexpensive and rapid-prototyping materials are essential in microfluidics device commercialization. This paper presents rapid prototyping of UV-curing Polyurethane Methacrylate (PUMA) microchannel from the Polydimethlsiloxane (PDMS) mold. Two techniques in PUMA microchannel UV-curing rapid prototyping have successfully demonstrated in this work. The first technique utilized thin film transparency sheet as PUMA resin top surface cover in facilitating PUMA UV-curing. The second method exploited confined nitrogen gas environment in Pyrex dish chamber in expediting PUMA curing under UV light exposure. In this work, two different approaches of fluidic interconnect tubings for PUMA microchannel inlet and outlet are also presented. Reversible bonding techniques using corona discharge treatment are utilized for bonding of PUMA microchannel and fluidic interconnect with PUMA, silicon, glass and PDMS substrate. Accomplishment of preliminary fluid flow testing using PUMA microchannel proved its capability for microfluidics applications.


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