Archive for the ‘Spotlight on Materials Advances Highly Cited Review Article’ Category

Spotlight on a Materials Advances Highly Cited Review Article

“Selenium nanoparticles: a review on synthesis and biomedical applications”

Materials Advances publishes review articles on topics across materials science, which are open access and free to read. To celebrate our excellent review articles, we asked the authors of some of our most well-received review articles to discuss their work in more detail.

In this post, we share insights from our interview with the authors of the recently published Materials Advances review “Selenium nanoparticles: a review on synthesis and biomedical applications“.

Insights from the authors of a highly cited Materials Advances review article

What aspect of your research are you most excited about at the moment?

“Elemental selenium (Se) has great importance in the fields of physics, chemistry, and biology. Se is an important element for human requirement. The United Kingdom group of vitamins and minerals recommended the daily intake of selenium by women and men should be 60 μg and 70 μg, respectively. A daily intake of more than 400 μg could be toxic which leads to a disorder known as selenosis. Selenium plays a key role as a biochemical component of glutathione peroxidase, an enzyme responsible for the protection of essential SH-groups and for the decomposition of peroxides, thereby acting as an antioxidant. In addition to immense role in biology, selenium based nanomaterials have attracted great attention of researchers and in fact metal selenides quantum dots are key component of modern day nanotechnology. Source of selenium often is a tricky component in such materials but bio-generated selenium may become a potential step in fine tuning and biocompatible quantum dots for a range on biomedical applications.

What do you find most challenging about your research?

Availability of greener selenium source for advancement of metal selenide quantum dots and their utility in the filed of biological sciences and biomedical industries as fluorescent tags, photonic materials. Such a collection for articles and review on single element chemistry such as the current one leads to much ease of operation for the researchers and the challenge associated can be managed and handled more effectively. In my research source of selenium is still a great challenge.

What does it mean to you to have a highly cited review article?

Getting recognition for our research and scientific contribution and that too from our peers from the Royal Society is much of moment of proud for us and is very gratifying feeling. It boost the confidence and makes us more responsible for conducting impactful research in our chosen field.

How do you feel about Materials Advances as a place to publish research on this topic?

When Royal Society floated this journal almost 3-4 years ago, we were sure that like any other RSC publication, this too will fetch global standard and we were proven right when its impact factor was disclosed last year and I am very proud to be associated with such new yet highly prestigious journal. Not many get the opportunity to be part of RSC publications. I am proud of my team to have agreed with me to choose materials advances for our publications. Ever since its inception, this journal has maintained high-quality research publications and has become first choice for material science.

What is one piece of career-related advice or wisdom that you would like to share with early career scientists?

Early career researchers should avoid being part of mad-race that publishes randomly without much clarity in their goals. They should identify research problems that will impact human race globally and try to come out of pathbreaking research results. They should not hesitate to establish early collaboration for multidisciplinary research as in today’s time applied research is much in demand and making great impact

Meet the authors

Dr Pawan Khanna received his PhD in Organometallic Chemistry of Se & Te from the Indian Institute of Technology, Bombay in 1989– 90. He went to Queens’ University of Belfast and University of Wales at Swansea (UK) for his postdoctoral research in the group of Prof. Christopher P Morley during 1989–92. Later, he joined C-MET, Pune. He was awarded the BOYSCAST fellowship of DST, Govt of India during 1998–99 to work on quantum dots driven by organometallic chemistry at University of St. Andrews, Scotland (UK) with Professor David J Cole-Hamilton. He joined Defence Institute of Advanced Technology, Pune, India (DIAT) in 2011 as its first Professor and is currently a HAG Professor and Head of the Dept. of Applied Chemistry. He has also served as dean of academic affairs at DIAT. His research interests include organometallic chemistry, materials chemistry, nano-chemistry of biological importance, quantum dots, nano-inks, nano-fluids and photo catalysis. He has published over 220 research papers. He has recently been named as the top 1% materials’ scientist in the world by a study conducted by Stanford University, USA. He has guided more than 70 masters, doctoral and post-doctoral researchers and completed 20 grant-in-aid research projects.
Neha Bisht obtained her BTech Degree in Chemical Engineering from BT Kumaon Institute of Technology (BTKIT), Dwarahat, Uttarakhand India in 2014. Continuing her studies, she received MTech Degree in Materials Science and Chemical Technology from the Defence Institute of Advanced Technology, Pune, India in the Department of Applied Chemistry in 2019, where she was a Gold medalist. During her study for her Master’s Degree, she received the All India Council Technical Education (AICTE) Fellowship through Graduate Aptitude Test in Engineering (GATE). She worked as a Project Assistant under the guidance of Prof. P. K. Khanna at DIAT, Pune, India. She is a life member of the ‘‘Society for Materials and Chemistry (SMC)’’, BARC, Mumbai. She is a lifetime member of ‘‘DIAT Alumni Association’’. She is currently persuing her PhD in south Korea. Her research interests include nanomaterials, hybrid nanocomposites, thermoelectric materials, metal oxides, ternary metal chalcogenides and their energy applications.
Priyanka obtained her BSc degree from Maharshi Dayanand University, Rohtak, Haryana, in the year 2015. During the BSc, she received a ‘‘Promotion of Science and Education (POSE)’’ scholarship from Department of Science & Technology (DST), Govt. of Haryana, India. Continuing her studies, she received an MSc degree in Applied Chemistry from Malaviya National Institute of Advanced Technology, Jaipur, India, in 2017. She completed her PhD under the guidance of Prof. P. K. Khanna at Defence Institute of Advanced Technology, Pune, India in November 2023. She is a life member of ‘‘Society for Materials and Chemistry (SMC)’’, BARC, Mumbai. She has published over 12 research articles and has a patent to her credit. Her research interests include nanomaterials, quantum dots, materials chemistry and their energy applications

We congratulate the authors on their impactful work and wish them success in their future academic research!

 

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Spotlight on a Materials Advances Highly Cited Review Article

“Fluorescent Schiff base sensors as a versatile tool for metal ion detection: strategies, mechanistic insights, and applications”

Materials Advances publishes review articles on topics across materials science, which are open access and free to read. To celebrate our excellent review articles, we asked the authors of some of our most well-received review articles to discuss their work in more detail.

In this post, we share insights from our interview with the authors of the recently published Materials Advances review “Fluorescent Schiff base sensors as a versatile tool for metal ion detection: strategies, mechanistic insights, and applications”.

Insights from the authors of a highly cited Materials Advances review article

What aspect of your research are you most excited about at the moment?

“The exciting aspects of fluorescence Schiff base research lie in its potential applications, such as in sensing and imaging. Understanding how these compounds interact with different environments or molecules opens up opportunities for advancements in various fields, from medicine to materials science. Additionally, exploring novel synthesis methods and improving the efficiency of fluorescence can contribute to the development of innovative technologies.”

What do you find most challenging about your research?

“Fluorescence Schiff base research, while exciting, also presents certain challenges. Some common challenges include:
(i) Synthesis complexity
(ii) Interference from environmental factors such as pH, temperature, and the presence of other organic or inorganic species.
(iii) The real-world application of these techniques often involves complex sample matrices, like biological fluids or environmental samples, which introduces additional challenges.”

What does it mean to you to have a highly cited review article?

“Being acknowledged by colleagues in the same field for one’s work is a rewarding experience for a researcher”

How do you feel about Materials Advances as a place to publish research on this topic?

Materials Advances has established itself as a prestigious journal within the Materials family. The platform it offers is a unique opportunity for researchers to present their latest discoveries in the field of materials science. With its consistently high-quality publications, this journal has evolved into a central hub for the advancement and dissemination of knowledge in materials science.”

What is one piece of career-related advice or wisdom that you would like to share with early career scientists?

“I recommend that early career researchers pinpoint global challenges and research gaps, dedicating their utmost efforts to address them in a meaningful way. Engage in brainstorming sessions, analyzing the What, Why, and How aspects—understand the problem, its underlying reasons, and potential solutions. Persistently pursue your aspirations, surmounting obstacles and challenges, until you can reflect with pride on your journey.”

Meet the authors

Dr Manoj Kumar Goshisht is an Assistant Professor of Chemistry at Govt. College Tokapal, Bastar, Chhattisgarh, India. He obtained his Master’s Degree from Guru Jambheshwar University of Science & Technology, Hisar, Haryana, and PhD Degree from Dr B. R. Ambedkar National Institute of Technology, Jalandhar, Punjab, India. He has cleared the National Eligibility Test (CSIR-UGC NET) for Assistant Professor in the subject of Chemical Sciences. He is a winner of the Editors Pick Award of the “9th DST & ACS Workshop” held on 11th August 2021. His research interests include organic chemistry, materials chemistry, supramolecular chemistry, and nanomaterials. He has published various research papers in reputed international peer-reviewed journals of The American Chemical Society, The Royal Society of Chemistry, and Springer Nature. He also has a book in his account published by CRC Press (an imprint of the Taylor & Francis group).

Prof. Goutam Kumar Patra did his Ph.D. from Jadavpur University, under the supervision of Prof. Dipankar Datta at Indian Association for the Cultivation of Science, Kolkata. Then he joined Tel Aviv University, Israel, as a postdoctoral research fellow with Prof. Israel Goldberg (2000–2002). Subsequently he moved to Carnegie Mellon University, USA where he worked with Prof. Catalina Achim. Then he joined as Asst. Prof. in Vijoygarh Jyotish Ray College, Kolkata in December 2003. He visited Max Planck Institute of Bioinorganic Chemistry, Mülheim, Germany as a BOYSCAST fellow during 2006–07 and worked with the then Director, Prof. Karl Wieghardt. He is a Professor in Guru Ghasidas Central University, Bilaspur since 2012. His research interests include chemosensor, redox activity, azamacrocyclic chemistry, crystal engineering, porphyrin and supramolecular chemistry, peptide nucleic acids (PNAs) and free radical chemistry. So far, he has published more than hundred research papers in the journals of national and international repute.

 

Dr. Neetu Tripathi earned her Ph.D. from Guru Nanak Dev University, Amritsar, India. She achieved first rank with a Gold medal in M.Sc. Chemistry (Instrumental Analysis) for her master’s degree. Currently, she serves as a Research Associate (RA) at DRDO, Defence Materials and Stores R&D Establishment. During her Ph.D., she received the prestigious INSPIRE fellowship from the Government of India. Dr. Tripathi has successfully cleared the National Eligibility Test (CSIR-UGC NET) for Assistant Professor and the Graduate Aptitude Test (GATE) in the subject of chemical sciences. Her research interests encompass organic chemistry, materials chemistry, supramolecular chemistry, and nanomaterials. She has contributed to various international peer-reviewed journals, including those by the Royal Society of Chemistry, Elsevier, and Springer. Additionally, Dr. Tripathi is an author of a book published by CRC Press, an imprint of the Taylor & Francis Group.

We congratulate the authors on their impactful work and wish them success in their future academic research!

 

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Spotlight on Materials Advances Highly Cited Review Article

Recent advances in chemical recycling of polyethylene terephthalate waste into value added products for sustainable coating solutions – hope vs. hype

Materials Advances publishes review articles on topics across materials science, which are open access and free to read. To celebrate our excellent review articles, we asked the authors of some of our most well-received review articles to discuss their work in more detail.

In this post, we share insights from our interview with Krishanu Ghosal and learn more about the authors of recently published paper Recent advances in chemical recycling of polyethylene terephthalate waste into value added products for sustainable coating solutions – hope vs. hype.

Graphical abstract for review article.

Insights from the authors of a highly cited Materials Advances review article

What aspect of your research are you most excited about at the moment?

“In this polymer age, the unprecedented escalation in the production, consumption, and disposal of post-consumer polymeric waste materials has become a critical environmental concern of paramount importance. According to a World Bank report, in 2016, the global production of plastic waste reached a staggering 242 million tonnes, constituting approximately 12% of the total solid waste generated worldwide. Historically, a significant portion of this plastic waste has been managed through methods such as landfills or incineration.

To address this escalating issue, researchers are now concentrating on the 3R (reduce, recycle, and reuse) concept of plastic products. Currently, I am specifically working on the recycling of plastic waste into value-added chemicals, which can serve as raw materials or intermediates for the creation of new materials, including novel biodegradable polymers. More precisely, my work involves developing new classes of biodegradable polymers derived from recycled polymeric materials waste focusing on biomedical and coatings applications.”

What do you find most challenging about your research?

“I feel that, the most challenging part about my research is translation of technology from lab to commercial scale. It’s common for reactions, processes, or technologies that prove effective in a lab setting to encounter significant drawbacks when implemented on an industrial scale. This challenge is particularly pronounced in the field of polymer recycling, where there has been a surge in research articles. Unfortunately, only a handful of these innovations make it to commercialization while maintaining socio-economic viability.

A noteworthy observation is the disparity between the promising laboratory results and the practical hurdles faced during industrial implementation. A recurring issue is the elevated cost of recycled raw materials compared to readily available fresh raw materials in the market, which diminishes the feasibility of recycling initiatives. Additionally, it’s imperative to consider the environmental impact of the recycling process. An ideal recycling method should not only be economically viable but also environmentally sustainable, ensuring a carbon-neutral or even negative footprint, while avoiding the generation of harmful chemicals throughout the entire process.”

What does it mean to you to have a highly cited review article?

“Receiving acknowledgment from peers in the same field is a truly gratifying experience for any researcher. It not only validates the dedication and effort invested in one’s work but also fosters a sense of professional camaraderie and shared appreciation within the research community.”

How do you feel about Materials Advances as a place to publish research on this topic?

“All of the journals of Royal Society of Chemistry’s Materials family are highly reputed among materials researchers. The Materials Advances platform offers a unique opportunity for researchers to showcase their latest findings in the dynamic field of materials science. Publishing in Materials Advances experience is really amazing. Additionally, because Materials Advances is an OA journal, the reach of the journal is broader, which attracts many researchers working in different fields of materials to read and publish in Materials Advances.”

What is one piece of career-related advice or wisdom that you would like to share with early career scientists?

“I feel that, early career researchers should choose problem statements wisely. To address these challenges, early career scientists should take the initiative and independently formulate solutions for their chosen problem statements. Engaging in discussions with fellow researchers and colleagues regarding the problem statement and potential solutions serves as a valuable process for refining and sharpening the proposed solution. This collaborative process not only hones their problem-solving skills but also cultivates critical thinking, fostering the development of well-rounded and innovative researchers.

Furthermore, I would recommend that early career scientists actively explore opportunities to translate their research into commercial applications. This initiative not only maximizes the societal impact of their work but also exposes them to the complexities and practicalities of taking scientific innovations from the lab to the market. By bridging the gap between research and commercialization, these scientists can bring out the true potential of their findings to the broader public, making a meaningful difference in the real world.”

Meet the authors

Photo of author Krishanu Ghosal.

Dr Krishanu Ghosal is currently a Post-Doctoral Fellow at the Wolfson Faculty of Chemical Engineering, Technion-Israel Institute of Technology. Before joining Technion he worked as an Assistant Technical Manager in Shalimar Paints Ltd. He did his Ph.D at the Department of Polymer Science and Technology, University of Calcutta, with a thesis titled “Synthesis of biopolymers from recycled plastic waste and natural resources for tissue engineering applications”. He obtained his B.Sc. in Industrial Chemistry and M.Sc. in Applied Chemistry from Ramakrishna Mission Vidyamandira, Howrah, India. During his B.Sc. and M.Sc., he was actively involved in various research activities as well as industrial training. During an M.Sc. summer internship, he worked under Professor T P Radhakrishnan, School of Chemistry, University of Hyderabad. There he worked on a project titled “Synthesis of ultrathin film based on poly-N-octadecylaniline based gold and silver nanoparticles using the air-solution interface”. He also worked under the guidance of Dr Atanu Bhattacharya at IISc Bangalore, completing his master’s thesis titled “Ground state decomposition mechanism of metal contained nitramine molecule”. His research interests include several diverse fields including synthesis of novel polymers, recycling of polymeric materials into value-added products, synthesis of nanomaterials and their biomedical applications, green chemistry etc.

Photo of author Chinmaya Nayak.

Mr Chinmaya Nayak is currently serving as the Head of Industrial R&D in Shalimar Paints Limited. Previously he worked as a Senior Development Manager in R&D at Berger Paints India Ltd, Kolkata. He received his M.Sc. degree in Chemistry from Delhi University and his M.Tech. (Corrosion Science & Technology) from NIT-Durgapur. He has 24 years of experience in the paint industry. As a seasoned R&D professional in the paint industry, he has designed and commercialized more than 2000 formulations. Additionally, he has trained more than 100 professionals in the field of paint technology. He has been a part of numerous technical events and conferences. In addition to that, he has been actively involved in the presentation and publication of technical papers.

We congratulate the authors on their impactful work and wish them success in their future academic research!

 

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