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Titlebook: In-Situ Gelling Polymers; For Biomedical Appli Xian Jun Loh Book 2015 Springer Science+Business Media Singapore 2015 Biodegradable Gels.Dru

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Enyi Ye,Pei Lin Chee,Ankshita Prasad,Xiaotian Fang,Cally Owh,Valerie Jing Jing Yeo,Xian Jun Lohide of the classroom. An effective way of encouraging compassionate and empathetic thinking and actions with students in schools is through the use of quality picture books. Many children’s books deal with deep emotional issues and, through both the words and images, evoke compassion and empathy. Su
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Jessie E. P. Sun,Darrin Pochanistically, involving mind, body and emotions (e.g. Neaum, 2010). In contrast to traditional school learning, young children’s learning is necessarily creative and spontaneous. Relationship is central and, as Murray (1998, 149) observes, since ‘toddlers do not have the cognitive ability to grasp the
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Biodegradable Thermogelling Poly(Organophosphazenes) and Their Potential Biomedical Applications,of molecular structures and easily modulated physico-chemical properties. Thus, biodegradable thermogelling poly(organophosphazenes) are expected to be very promising biomaterials as injectable systems with minimal surgical intervention for drug delivery and tissue engineering applications. The key
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Designing Hydrogels by ATRP,olymerization (ATRP) technique. ATRP has been employed as an effective means to synthesize well-controlled polymeric materials with narrow molecular weight distributions, compositions, chain-end functionalities, and macromolecular architectures. These ATRP-processed materials include not only linear
发表于 2025-3-28 04:15:21 | 显示全部楼层
Supramolecular Soft Biomaterials for Biomedical Applications,ts of our body. Traditional covalent chemistry has served us well in terms of the design of materials. The future of soft biomaterials demands the ease of synthesis, multi-functionality and efficacy. Supramolecular hydrogels are the next-generation materials to enter the biomedical arena. These mate
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Peptidic Hydrogels,scuss the fundamental properties of peptide hydrogels and the molecular foundations. Peptide hydrogels are great candidates in the ever-growing field of biological and medical applications due to their ease of synthesis and customizable molecular and material features. The natural cytocompatibility
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