
Mustafijur Rahman- Master of Science The University of Manchester UK
- PhD Researcher at RMIT University
Mustafijur Rahman
- Master of Science The University of Manchester UK
- PhD Researcher at RMIT University
PhD Researcher, RMIT University, Australia
About
20
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Introduction
Mustafijur Rahman is a Ph.D. researcher at RMIT University's Center for Materials Innovation and Future Fashion (CMIFF), Australia. With an M.Sc. from the University of Manchester, UK, he possesses extensive knowledge and expertise in biomedical textiles, biomaterials, polymer composites, recycling, and novel dyes for biomedical applications.
Current institution
Publications
Publications (20)
In recent times, the integration of nanomaterials into 3D biofabricated structures has become a transformative approach in advancing the biomedical field. Nanomaterials exhibit distinctive properties such as superior mechanical strength, enhanced biocompatibility, and improved drug delivery efficiency, making them well‐suited for biomedical use. Th...
Silk fibroin (SF), a natural protein derived from silkworms, has emerged as a promising biomaterial due to its biocompatibility, biodegradability, degradation rate, and tunable mechanical properties. This review delves into the intrinsic attributes of SF that make it an attractive candidate for scaffold development in tissue engineering and regener...
The incorporation of nanomaterials has revolutionized the field of additive manufacturing. The combination of additive manufacturing technology with nanomaterials has significantly broadened the scope of materials available for modern and innovative applications in various fields, including healthcare, construction, food processing, and the textile...
At present, peripheral nerve injuries (PNIs) are one of the leading causes of substantial impairment around the globe. Complete recovery of nerve function after an injury is challenging. Currently, autologous nerve grafts are being used as a treatment; however, this has several downsides, for example, donor site morbidity, shortage of donor sites,...
Zein, which accounts for around 80% of the total protein composition in corn, is a biocompatible and biodegradable substance derived from renewable sources. Although insoluble in water, its amphiphilic characteristics are utilized to generate nanoparticles, nanofibers, microparticles, and even films. Numerous recent studies have demonstrated the po...
Traditional wound dressings, despite their widespread use, face limitations, such as poor infection control and insufficient healing promotion. To address these challenges, bioactive materials have emerged as a promising solution in wound care. This comprehensive review explores the latest developments in wound healing technologies, starting with a...
In this study an attempt was made to investigate bio pretreatment and chemical pretreatment process and observe the effects in terms of absorbency, bursting strength, wash and rubbing fastness, water, and energy consumption. Four samples (S1, S2, S3 and S4) were prepared by different pretreatment processes and then were dyed with two different reac...
The Turag River has an extensive reputation for backing the coastal people’s income for years; nonetheless, its burden is enormous owing to numerous anthropogenic drivers. DEPZ (Dhaka Export Processing Zone) can be considered one of the crucial zones for textile industries. DEPZ is situated in Savar, and the nearest river is Turag, the upper tribut...
Halochromism or pH sensitivity has tremendous potential for applications in various textile fields, such as protective clothing, wound dressings, etc. Reactive dye is mostly used to colour cotton or other regenerated cellulose fibres due to its better fastness and wide range of hue, from vivid to dull shades. In this research work, an azo-based dic...
The electrolysis process is an easy alternative for the treatment of textile dyehouse wastewater. To study the effectiveness of the carbon electrode electrolysis method in dyehouse effluent treatment is the main objective of this research. In most cases, the metal electrode used in the electrolysis system becomes decayed and needs to be replaced af...
The electrolysis process is an easy alternative for the treatment of textile dyehouse wastewater. To study the effectiveness of the carbon electrode electrolysis method in dyehouse effluent treatment is the main objective of this research. In most cases, the metal electrode used in the electrolysis system becomes decayed and needs to be replaced af...
Due to some intrinsic functional behavior of alginate, many potential applications in the healthcare industry especially in wound care sector are observed. Many researches have been carried out to develop potential biomedical biocompatible products in different forms from alginate fibres. Alginate nanofibres were prepared from sodium alginate polym...
Considering the post COVID19 pandemic situation, it can be assumed that using safer clothing will be a great attraction point for consumers across the world. In that scenario, effective antimicrobial finishes that are readily available and cheap would contribute to the consumer demand of safer clothing. This study scrutinized the antimicrobial acti...
The purpose of this research work is to explore the potential of jute composites to be used in side panels of a car as a lightweight biodegradable substitute to steel and other materials, which will result in better fuel efficiency and maneuvering capabilities. Various tests were carried out to determine the feasibility of using these materials to...
Management of menstrual hygiene is a critical problem for Bangladeshi women and girls as the sanitary pads are expensive. Therefore, purchasing sanitary napkins for incredibly poor and middle-class families is very challenging. Many retail sanitary napkins are available on the local market, but most of them are costly. However, poor women’s are una...
Poly(ethylene oxide) (PEO) loaded alginate nano-fibres were produced by electrospinning of the 4 % (w/w) of 70:30 Na-alginate/PEO spinning solution. In this research, the effects of solution viscosity and storage time of the spinning solution on fibre diameter and morphology were studied. Results show that the viscosity of the spinning solution was...
Pre-treatment plays a significant role for the successful coloration of any kind of natural textile fiber like cotton, wool, flax, silk etc. This research work overview the influence of various types of traditional preparation techniques applied on cotton fiber before coloration such as desizing, scouring and bleaching. The traditional pre-treatmen...
Nowadays Computer-aided design (CAD) techniques such as Lectra Modaris is becoming exceedingly popular in the apparel industries worldwide for pattern construction because of its accuracy, efficiency and time-saving solutions to much arduous operation (Sayem et al., 2010). The principle objective of this article is to draft a set of pattern pieces...
A significant amount of studies have already been devoted to the advancement of spun yarn production technology. This article has critically evaluated some recent innovations in spun yarn production such as twisting mechanism based on superconducting technology in ring-spinning system, concept of manufacturing cluster spun composite yarn and develo...
Preparation is a fundamental factor for any textile material in order to produce the substrate with accurate chemical and physical properties to ensure persuasive colouration and finishing. Pre-treatment plays a significant role for the successful coloration of any kind of natural textile fibre like wool. This paper overview the influence of differ...