Why Choose Us
Your Partner in Research

Alentris is the organisation which built by the scientist and driven by their team members, values, delivery commitments, attention to details, technology, innovation, discovery, community, social responsibility.

At Alentris, we conduct our business with transparency and integrity. This will help us attract the best talent and win the trust of valuable stakeholders. We are the manufacturer of API Impurities which is require in highly regulated sector, we adopt a high-watermark approach to compliance customer need to ensure that we exceed the requirements of all applicable international standards.

Some Numbers of our Achievement

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Our Commitment

Advancing Innovation through Synthesis Chemistry

At Alentris Research, where we are dedicated to pushing the boundaries of scientific exploration and innovation. Our mission is to conduct cutting-edge research in the field of synthesis chemistry, paving the way for new discoveries, transformative technologies, and sustainable solutions that benefit society as a whole.

Vision of Excellence: At the heart of our mission lies a vision of excellence. We aspire to be a driving force in the realm of synthesis chemistry, recognized globally for our groundbreaking contributions to the advancement of knowledge and the application of novel chemical transformations. Through meticulous experimentation, rigorous analysis, and collaborative efforts, we seek to redefine what is possible in the world of molecules and materials.

Key Pillars: Our mission is supported by three key pillars:

Innovative Research: We relentlessly pursue innovative avenues of research that challenge existing paradigms and spark new ideas. By exploring novel reactions, designing efficient synthetic routes, and developing unique catalysts, we aim to unlock the potential of uncharted chemical spaces. Our focus ranges from fundamental chemical insights to the creation of functional materials with real-world applications.

Interdisciplinary Collaboration: We recognize that the most impactful breakthroughs often occur at the intersections of disciplines. Our lab fosters a culture of collaboration, where chemists, engineers, physicists, and biologists come together to exchange perspectives, share knowledge, and collectively tackle complex scientific challenges. This collaborative approach enriches our research and accelerates the translation of our findings into practical solutions.

Sustainability and Responsibility: As stewards of scientific progress, we are committed to conducting our research with a strong sense of responsibility toward the environment and society. Our lab emphasizes the development of sustainable synthetic methodologies that minimize waste, energy consumption, and environmental impact. We also prioritize safety and ethical considerations in all our endeavors, ensuring that our work aligns with the highest standards of integrity.

Impact and Outreach: Our mission extends beyond the confines of our lab. We aim to make a tangible impact by contributing to the global knowledge base, training the next generation of scientists, and fostering scientific curiosity in our communities. Through publications, presentations, workshops, and educational initiatives, we actively engage with both experts and the general public to share our findings, inspire others, and promote a greater understanding of the importance of synthesis chemistry in shaping the world around us.

Join Us in Shaping the Future: We invite researchers, students, and collaborators from diverse backgrounds to join us on this exhilarating journey of scientific exploration and innovation. Together, we will continue to unravel the mysteries of chemical synthesis, create new possibilities, and forge a path toward a brighter, more sustainable future for all.

At the Synthesis Chemistry Lab, our mission is clear: to pioneer transformative research, nurture collaboration, uphold sustainability, and leave an enduring mark on the landscape of science and technology.

Redefining Possibilities in Synthesis Chemistry

At Alentris Research, where our vision is to reimagine the boundaries of synthesis chemistry and catalyze a wave of transformative advancements that transcend traditional limitations. Our vision encapsulates a future where innovative synthetic approaches drive the creation of new materials, revolutionize industries, and address pressing global challenges.

Pioneering Novelty: At the core of our vision is the unwavering commitment to pioneering novelty. We envision a landscape where conventional thinking is constantly challenged, and unconventional ideas thrive. By harnessing the power of creative synthesis, we seek to unravel the intricacies of molecular transformations and develop groundbreaking methods that open doors to unexplored chemical territories.

Unleashing Potential: Our vision extends to the idea of unleashing the full potential of synthesis chemistry. We aspire to develop synthetic strategies that not only deliver targeted molecules but also unravel their intricate properties and applications. By understanding the relationship between structure and function, we aim to craft materials with tailor-made characteristics that find use in fields ranging from electronics and energy storage to medicine and sustainable materials.

Interdisciplinary Synergy: In pursuit of our vision, we recognize the paramount importance of interdisciplinary synergy. Our lab serves as a hub where experts from diverse scientific domains converge. By fostering collaborations between chemists, engineers, physicists, biologists, and computational scientists, we amplify our collective ability to tackle complex challenges, accelerating the translation of fundamental discoveries into impactful real-world solutions.

Sustainability as a Guiding Principle: Central to our vision is the integration of sustainability as a guiding principle in all our endeavors. We envision a future where synthesis chemistry contributes to a greener and more sustainable world. Our lab is committed to developing methods that minimize waste, reduce energy consumption, and promote environmentally friendly practices. Through responsible innovation, we aim to balance scientific progress with ecological well-being.

Inspiring Future Generations: Our vision extends beyond laboratory walls. We aspire to inspire and nurture the curiosity of future generations. By sharing our passion for synthesis chemistry through educational outreach, workshops, and community engagement, we hope to cultivate a new wave of thinkers who will carry forward our mission of redefining possibilities and driving innovation.

Joining Forces for Transformation: We invite researchers, students, and collaborators who share our vision to join us on this exciting journey of exploration and transformation. By harnessing the collective power of our diverse talents and perspectives, we are poised to reshape the landscape of synthesis chemistry, ushering in an era of discovery that leaves an indelible mark on science, technology, and society as a whole.

In the Synthesis Chemistry Lab, our vision stands as a testament to our dedication to innovation, collaboration, sustainability, and the relentless pursuit of knowledge. Together, we are not just observing the future; we are actively shaping it through visionary synthesis chemistry.

Catalyzing Discovery in Synthesis Chemistry

At Alentris Research, our goal is to catalyze transformative discovery through cutting-edge research in the realm of synthesis chemistry. Driven by a dedication to scientific excellence and a thirst for innovation, our overarching objective is to advance the frontiers of synthetic methodologies, unravel the intricacies of molecular transformations, and translate our findings into tangible solutions that shape industries and improve lives.

Advancing Synthetic Methodologies: At the core of our goal lies the advancement of synthetic methodologies. We strive to develop novel and efficient ways of assembling complex molecules. Our focus extends beyond incremental improvements, aiming instead to pioneer revolutionary approaches that simplify synthesis, reduce reaction steps, and enhance the overall efficiency of chemical processes. Through our work, we aspire to provide tools that empower researchers across disciplines.

Unravelling Molecular Complexity: Our goal extends to the profound exploration of molecular complexity. We envision a future where the intricacies of chemical reactions are not only understood but also manipulated with precision. By dissecting the underlying mechanisms and understanding the subtle nuances that govern molecular transformations, we seek to harness this knowledge to create tailored molecules and materials with unprecedented functionalities.

Connecting Fundamental Insights to Applications: Translating fundamental insights into practical applications is a central aspect of our goal. We strive to bridge the gap between academia and industry by developing methodologies that have real-world relevance. Whether it’s designing new drugs, optimizing materials for sustainable energy solutions, or contributing to advancements in technology, we are committed to creating tangible value from our research.

Cross-Disciplinary Collaboration: Our goal is fortified by cross-disciplinary collaboration. We recognize that diverse perspectives fuel innovation. By fostering collaborations that transcend traditional boundaries, we aim to create a dynamic environment where chemists, engineers, physicists, and other experts collaborate to solve complex challenges. This collaborative synergy enriches our research and accelerates the pace of discovery.

Ethics, Responsibility, and Impact: We hold ourselves to the highest ethical standards and prioritize responsibility in our research endeavors. Our goal includes ensuring that the impact of our work is not only scientifically profound but also socially and environmentally responsible. By considering the broader implications of our discoveries, we aim to contribute positively to society and foster sustainable progress.

Inspiring Future Generations: Our goal extends beyond immediate achievements. We strive to inspire and educate the next generation of scientists. Through mentorship, educational initiatives, and community engagement, we aim to kindle the curiosity and passion that drive scientific inquiry. By empowering aspiring scientists, we contribute to a legacy of innovation that transcends our lab’s walls.

Join Us in the Pursuit of Discovery: To fellow researchers, collaborators, and enthusiasts, we extend an invitation to join us in the pursuit of discovery. Together, we can amplify our collective impact, push the boundaries of synthesis chemistry, and leave an indelible mark on the ever-evolving landscape of science and technology.

In the Synthesis Chemistry Lab, our goal is not just a destination; it’s a dynamic journey that propels us forward in the quest for transformative discovery and the continuous reimagining of what is possible.

Curiosity as the Catalyst

Welcome to Alentris Research, where our philosophy is rooted in a harmonious fusion of curiosity, precision, and impact. We believe that the art of synthesis chemistry is a delicate dance between exploration and control, driven by a commitment to unraveling the mysteries of molecules while crafting solutions that contribute meaningfully to science, technology, and society.

Curiosity as the Catalyst: At the core of our philosophy is an insatiable curiosity that propels us forward. We view every chemical reaction as an opportunity for discovery, every molecule as a puzzle piece in the grand tapestry of science. We ask bold questions, challenge assumptions, and venture into uncharted territories, driven by an innate desire to uncover the hidden truths of the molecular world.

Precision in Pursuit of Excellence: Precision is our guiding star. We uphold the principle that every reaction, every manipulation, and every synthesis should be executed with meticulous care. From the design of reaction pathways to the selection of reagents, precision ensures the reproducibility and reliability of our results. Through meticulous planning and attention to detail, we strive for excellence in every facet of our work.

Impact as the True Measure: Our philosophy extends beyond the confines of the laboratory bench. We measure success by the impact we create in the scientific community and beyond. We recognize that the true value of our research lies in its ability to translate into real-world applications. Whether it’s advancing medical treatments, pioneering sustainable technologies, or influencing policy decisions, our work is driven by the pursuit of meaningful impact.

Collaboration: A Symphony of Minds: Collaboration is the heartbeat of our philosophy. We believe that great minds achieve even greater feats when united. We foster an environment that encourages interdisciplinary collaboration, recognizing that diverse perspectives enrich our understanding and accelerate the pace of discovery. Through open dialogues and shared insights, we cultivate an atmosphere of collective wisdom that propels us forward.

Ethics and Responsibility: Guiding Our Path: Ethics and responsibility are the cornerstones of our philosophy. We approach our work with a profound sense of responsibility for the consequences of our discoveries. We are committed to conducting our research ethically, prioritizing safety, minimizing environmental impact, and considering the broader implications of our findings. Our journey is guided by the understanding that science must serve the greater good.

Inspiring the Next Generation: Our philosophy extends to shaping the future of science by inspiring the next generation of researchers. We believe in the transformative power of mentorship, education, and outreach. By sharing our passion, knowledge, and experiences, we aim to ignite the spark of scientific curiosity in young minds and empower them to carry our legacy forward.

Joining the Journey of Exploration: To fellow scientists, collaborators, and visionaries, we extend an invitation to join us in the journey of exploration, precision, and impact. Together, we can unravel the mysteries of the molecular world, shape the course of innovation, and leave a lasting imprint on the evolution of synthesis chemistry.

In the Synthesis Chemistry Lab, our philosophy is not just a guiding principle; it’s a dynamic force that propels us to explore, create, and transform, infusing every reaction with purpose and every discovery with significance.

Milestone

The term “milestone” typically refers to significant events or achievements in the history of a company that mark its progress, growth, and success. Milestones can vary widely depending on the company’s industry, size, and goals. Here are some common milestones that companies may aim for:

Foundation of company establishment

First International export Foot Print

First Milestone Achieved and started the API Synthesis facility

Started the Initiation of Own R&D Facility

Moved the Alentris Research in Bigger and well-equipped R&D Facility

Installed First LCMS and other analytical facility at Site

Bigger Team to achieve big goals

2017
2018
2020
2022
2022
2023

Incorporation and First Customer:

In the year 2017 company was legally established as a separate entity and the company’s first product or service to the market.

Partnerships:

In the year 2018, Establishing strategic partnerships along with confidential agreements (CDA Sign) with other companies can open up new opportunities for the first export of the organization.

Expansion:

In the Year 2020, the company has expanded to achieve new goals, markets, and regions.

Funding Rounds:

Successful rounds of funding in the year 2022 signify investor confidence and financial stability.

Facilities and Team:

Year 2022, the company has new facilities to help customers and grow the team size with women empowerment.

Community Engagement:

Active involvement in 2023 and contributions to the local or global community.

Area of Significant Strength in Organic chemistry
We are having capabilities to synthesis more than 10,000 analytical standards. We are having the expertise in isolation and characterisation of known and unknown impurities. We can provide the support to increase the degradation product from 0.01 % to 98% purity of impurity.

Synthetic Organic
Chemistry

This field involves the design and synthesis of organic compounds. It plays a crucial role in the development of new drugs, materials, and chemicals. Researchers in this area use a wide range of reactions and techniques to create complex molecules with specific properties.

Organic Reaction Mechanisms

Understanding how organic reactions occur at the molecular level is fundamental to organic chemistry. Researchers in this field investigate the step-by-step processes that lead to the formation of products in chemical reactions.

Organic
Spectroscopy

Techniques such as nuclear magnetic resonance (NMR) spectroscopy, infrared (IR) spectroscopy, and mass spectrometry are used to analyse the structure of organic compounds. These tools are essential for identifying and characterizing molecules.

Organic Synthesis
Strategies

Developing efficient and practical methods for synthesizing organic compounds is a critical aspect of organic chemistry. This includes the use of protecting groups, catalysts, and novel reaction conditions.

natural

Natural Product
Chemistry

Natural products are compounds derived from living organisms, such as plants and microorganisms. Studying these compounds can lead to the discovery of new medicines, agrochemicals, and other valuable substances.

Medicinal
Chemistry

Medicinal chemists work at the interface of organic chemistry and pharmacology to design and synthesize drugs. They aim to create compounds with specific biological activities while minimizing side effects.

Supramolecular
Chemistry

This field explores non-covalent interactions between molecules and the assembly of complex structures. It has applications in areas such as molecular recognition, host-guest chemistry, and the design of functional materials.

Green
Chemistry

As sustainability becomes increasingly important, green chemistry focuses on developing environmentally friendly and sustainable methods for organic synthesis. This includes reducing waste, using renewable feedstocks, and minimizing the environmental impact of chemical processes.

Organic
Electronics

Organic compounds can be used in electronic devices, such as organic light-emitting diodes (OLEDs) and organic photovoltaics (OPVs). Understanding the properties and synthesis of organic semiconductors is crucial in this area.

Polymer
Chemistry

Polymers are large molecules made up of repeating units. Polymer chemists study the synthesis, properties, and applications of these materials, which are essential in industries ranging from plastics to biomaterials.

Our Publication

  1. Microwave Mediated Reduction of Heterocycle and Fluorine Containing Nitroaromatics with Mo(CO)6 & DBU,. Tetrahedron, 2008, 64, 10195.

  2. Molybdenum Hexacarbonyl & DBU reduction of Nitro Compounds Under Microwave Irradiation, Synlett, 2007, 2557.

  3. Microwave-Mediated Synthesis of an Arylboronate Library, ACS Combi. Sci. 2011, Vol 13, Issue 1, pp 24-31.

  4. Crystal Structures of Two Palladacycles from the C–H Activation of 2-(Thiophen-2-yl)pyridine, J. Chem. Crystallogr., 2010, Vol 41, No 4, pp 523-527.

  5. Synthesis and solid state study of pyridine- and pyrimidine-based fragment libraries. Tetrahedron Lett, 2011, 5905-5909.

  6. Microwave-mediated synthesis and manipulation of a 2-substituted-5-aminooxazole-4-carbonitrile library, Tetrahedron Lett, 2012, 1656-1659.

  7. The unexpected but predictable tetrazole packing in flexible 1-benzyl-1H-tetrazole, CrystEngComm, 2012, 14, 6441-6446.

  8. Synthesis of hybrid anticancer agents based on kinase and histone deacetylase inhibitors, Chem. Com., 2014, 5, 1829-1833.