Department of Bioproducts and Biosystems

Biobased Colloids and Materials (BiCMat)

BiCMat group led by Prof. Orlando Rojas works toward supporting global sustainable development through research on the fundamental and utilization aspects of renewable resources, including lignocellulose, proteins and other biopolymers. Our research aims to discover competitive alternatives for fossil materials.
CHEM_Bio_Bicmat

The BiCMat group is based in the Department of Bioproducts and Biosystems and we are an active member of the broader Materials and sustainable use of natural resources key research area at Aalto University. Our research group consists of scholars at various stages of their careers, from MSc. students to Post-doc researchers. In addition, we continually host visiting scholars from other academic/research institutions around the world.

BiCMat Activity Summary 2019
BiCMat Activity Summary 2018

Our research focus:

Our research focus is on finding competitive alternatives to fossil materials through research into bio-based materials at different size scales, mainly those displaying large interfacial areas such as fibers (micro/nano fibers), fiber networks, particles and colloidal systems. We are interested in:

Ligno-nanocellulose and bacterial cellulose:

We utilize novel cellulosic materials from various sources to develop high value-added applications.

Multiphase systems:

We study the fundamental and utilization aspects of multiphase systems, such as dispersions, emulsions, foams, membranes and gels.

Multiphase systems have a large variety of functionalities in the application of textile products, light-weight materials, water treatment, encapsulations, etc. Current environmental concerns have prompted an increasing demand for bio-material-based multiphase systems, such as foams, emulsions, aerogels. Our research interests involves revolving the colloidal-related mechanisms in fiber-based foams for papermaking. Also, we explore the roles and capabilities of (ligno-)cellulosic materials (e.g. (lingo-)cellulosic fibers, (lingo-)nano-cellulose, etc.) in a multiphase system.

Films, filaments and hybrid materials:

We employ the versatility of lignonanocellulose and cellulose derivatives in novel film, paper and filament structures in combination with other nano- and functional materials.

Bionanomaterials are often thought to be difficult to process and limited in functionality. To enable feasible processing, we work on paper, film and filament structures which can conveniently fit into existing industrial processes. Furthermore, we see papers, films and filaments as useful model structures for demonstrating novel functionalizations.

Even though biomaterials can natively have a limited functionality, they typically have a promising chemical versatility. We employ this versatility for new purposes, such as water-resistant, thermoformable, electrically conductive, luminescent or antibacterial cellulose. With this work, we target applications that will be important for tomorrow’s society, such as composite materials, packaging, energy harvesting and rapid diagnostics.

Lignin:

We search for new, more valuable application areas for lignin, for example nanoparticles or coatings.

Lignin is the second most abundant natural raw material and nature’s most abundant aromatic polymer, which can be found in plants. Lignin is generally obtained from black liquor as a waste from pulp industry in large quantities. Although much of the lignin produced by pulp industry is currently consumed as a fuel, there are other, higher value added applications, such as carbon material precursor, emulsifier, coating, filler or substitute for metal/inorganic nanoparticles. We study these new areas for lignin utilization, envisioning lignin’s transition from waste into a valuable raw material.

Proteins:

We research the interactions between proteins and polysaccharides and thus develop materials combining these components.

Proteins, natural and renewable biomolecules, perform a vast number of functions that show great potential in various challenging applications. We study the functional properties of proteins in molecular and surface interactions, crosslinking, foaming, adsorption and separation processes. Specific areas of interest include the interactions between proteins and polysaccharides and materials combining these components. Through this work, we are aiming to improve the formability of cellulose-based materials, create antibiofouling surfaces and other functional biointerfaces relevant to the medical, biotechnological and food fields.

Bioactive cellulose:

We capitalize on the biocompatibility of cellulose in medical applications through modifications with antibodies, enzymes and other bioactive molecules.

We have introduced conjugation of short peptides to nanocelluloses for low cost and disposable sensors as well as supports for detection or separation of bioactive molecules. We aim at developing sustainable bioactive materials that can be safely disposed or regenerated. Specific topics that have been developed in our group include

  • immunoglobulin G binding and detection
  • heparin, Avidin-Biotin and other complexes
  • affibodies and C-reactive proteins
  • role of ligand spacer on passivation, binding, kinetics, and mass transfer
  • rapid immunoassays and diagnostics
3d rendering of bioactive (nano)cellulose.
A photo demostrating the use of cellulose nanocrystals (CNC) for structural color on a piece of fabric.

Honors and awards

ERC Advanced Grant recipient

2018 , the highest recognition in the area of cellulose and renewable materials

BiCMat is a part of Academy of Finland's Centre of Excellence in Molecular Engineering of Biosynthetic Hybrid Materials (HYBER, 2014-2019)

In 2015, Orlando Rojas received TAPPI Nanotechnology Division Technical Award and IMERYS Prize

Prof. Orlando Rojas

Through our research we find competitive uses of renewable biological resources.

Prof. Orlando Rojas, head of the research group

BiCMat members

Here you will find the individuals who are part of the Biobased Colloids and Materials (BiCMat) research group.

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A quirky group photo of BiCMat members taken by Dragon Flower Photo Studio

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BiCMat Publications

Latest publications:

Roozbeh Abidnejad, Hossein Baniasadi, Ziba Fathi, Alexey Khakalo, Ari Kankkunen, Ari Seppälä, Orlando Rojas, Maryam Roza Yazdani McCord, Bruno D. Mattos, Eero Kontturi 2026 Chemical Engineering Journal

Hossein Baniasadi, Roozbeh Abidnejad, Ziba Fathi, Kristoffer Meinander, Antti Koistinen, Eero Kontturi, Erlantz Lizundia 2026 Chemical Engineering Journal

Hossein Baniasadi, Sedigheh Borandeh, Ziba Fathi, Roozbeh Abidnejad, Pedro E. S. Silva, Lauri Välinen, Jaana Vapaavuori, Eero Kontturi, Jukka Niskanen 2026 Small Science

Bruno Hori Barboza, Rosangela A. Maia, João Paulo Cachaneski-Lopes, Augusto Batagin-Neto 2026 Polymer International

Pedro Henrique Gonzalez de Cademartori, Ludmila C. da Conceição Ferreira, Beatriz Leite, Alexandre Vidal Bento, Ávila Ferreira de Sousa, Bruno Dufau Mattos, André Luiz Missio, Washington Luiz Esteves Magalhães 2026 Pesquisa Agropecuaria Brasileira

Isadora de Souza Lopes, Bruno Dufau Mattos, Antonio José Guillot, Zhangmin Wan, Yi Lu, Luiz Henrique Fasolin, Hélder A. Santos, Orlando J. Rojas, Carolina Siqueira Franco Picone 2026 Chemical Engineering Journal

Isadora de Souza Lopes, Luiz Henrique Fasolin, Orlando J. Rojas, Carolina Siqueira Franco Picone 2026 Food Research International

Mariana M.L.H. Forini, Luiz A.F. Cavalcante, Débora R. Antunes, Júlia R. de Freitas, Pedro H.C. Lima, Érica R. Biscalchim, Bruno D. Mattos, Marcelo C.M.Teixeira Filho, Renato Grillo 2026 Advanced Sustainable Systems

Haider Iftikhar, Maryam Borghei, Alireza Eivazi, Bruno Medronho, Renyun Zhang, Christina Dahlström, Magnus Norgren, Orlando J. Rojas 2026 SmartSys

Emilia Kauppi, Jukka Niskanen, Bruno Dufau Mattos, Kristoffer Meinander, Kaarlo Nieminen, Eero Hiltunen, Jouni Paltakari 2026 Cellulose
More information on our research in the Aalto research portal.

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Appointments, University Published:

Aalto Distinguished Professor Jukka Pekola’s message: Basic research is at the heart of progress

Department of Applied Physics Professor Jukka Pekola was appointed Aalto Distinguished Professor on September 1, 2026.
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Awards and Recognition, Cooperation Published:

Unite! Seed Fund 2026 – Aalto involved in eight projects

From the 2026 Seed Fund call, 22 proposals were selected for funding. Aalto is involved in eight of these projects and coordinates one.
Assistant Professor Hadi Ghanbari
Press releases, Research & Art Published:

‘Gamified’ DDoS attacks wage psychological warfare against NATO states, finds study

‘Hacktivism’ is evolving into a hybrid threat that blurs the lines between propaganda, geopolitical warfare and financially incentivised cyber-crime, says study of pro-Russian hackers NoName057(16).
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Aalto Magazine, Research & Art Published:

We need growth – but what exactly are we growing?

Governments demand it, companies promise it, and universities are expected to deliver it. Growth is widely seen as the answer to debt, competitiveness, and the future of the welfare state itself. But what do we actually mean by growth – and what kind of growth are we aiming for?

Events:

Designs for a Cooler Planet guided tour
Exhibitions

Book a visit to Designs for a Cooler Planet exhibition

Experience Helsinki Design Week at Aalto University and reserve your place on a guided exhibition tour. The tours are free of charge and take place on Tuesdays. Tours are offered in Finnish and English on alternating weeks.
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Public defence in Economics, M.Sc (Econ.) Juuso Mäkinen

Essays on Labor Supply and Public Policy
YUIMA NAKAZATO, GLACIER, March 2025, photographed in Hailuoto.
Lectures and seminars

Tomorrow's wardrobe & fashion futuring

We need a fashion futuring approach and a new mindset—how we design and manufacture, and how we understand fashion—and this seminar aims to offer that.
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Lectures and seminars

Department of Computer Science, MSc Thesis Presentations, Tianshu Cao

Tianshu Cao will present their Master’s thesis on Tuesday 15 September at 14:00 in Zoom
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