TACC, a wholly owned subsidiary of HEG, is an India-based company specializing in advanced carbon and synthetic graphite technologies.
TACC is driving innovation across both synthetic graphite-based Anode Active Material (AAM) and graphene derivatives, two critical components in the global energy storage and industrial ecosystems.
TACC leverages the global reach and deep expertise of HEG, India’s leading graphite electrode manufacturer, exporting over 70% of its output worldwide. With the strong backing of the LNJ Bhilwara Group, whose industrial footprint spans more than 40 locations across India, TACC is rapidly emerging as a key enabler in the sustainable advanced material supply chain.
Capitalizing on the in-house capabilities, TACC’s R&D facility has pioneered process technologies for various industrial applications. It also houses a state-of-art cell laboratory for material testing, capable of developing, coin, pouch and cylindrical cells of different chemistries.
Contact information for The Advanced Carbons Company (TACC)
Bhilwara Tower, A-12, Sector 1
Delhi
India
TACC Limited and NUS I-FIM enter MOU to advance next-generation materials
TACC Limited, an LNJ Bhilwara Group company and wholly owned subsidiary of HEG Limited, has signed a Memorandum of Understanding (MOU) with the Institute for Functional intelligent Materials (I-FIM) at the National University of Singapore (NUS) to collaborate in the fields of advanced materials science, nanotechnology, and related disciplines.
The collaboration reflects a shared vision between academia and industry to accelerate the development, validation, and commercialization of next-generation advanced materials technologies, including graphene and other functional nanomaterials. The MoU establishes a framework for long-term cooperation between TACC and NUS I-FIM, combining TACC’s industrial and commercialization capabilities with NUS’ globally recognized scientific research expertise.
TACC signs MoU with NCB to develop graphene-enhanced concrete
The Advanced Carbons Company (TACC), a wholly owned subsidiary of HEG, has signed a memorandum of understanding (MoU) with the National Council for Cement and Building Materials (NCB) to jointly develop next-generation sustainable, durable, and high-performance concrete using TACC’s graphene-based additives.
This strategic collaboration will focus on integrating graphene’s unique properties into concrete to significantly enhance its strength, durability, and overall performance. A key objective of the partnership is to contribute to the reduction of carbon emissions, thereby aligning with India’s long-term climate goals and vision of achieving net-zero emissions.
Birla Cellulose & LNJ Bhilwara Group collaborate to explore functional graphene-enhanced textiles
Birla Cellulose, Cellulosic Fibres division of Grasim Industries Ltd, has announced the signing of a Joint Development Agreement (JDA) with LNJ Bhilwara Group Companies (RSWM Limited & TACC Limited) as the next step forward in the development of graphene technology for textile applications.
Undet this collaboration, TACC Limited will supply graphene derivatives to Birla Cellulose, and Birla Cellulose will integrate TACC’s graphene derivatives into the production of viscose fibers. RSWM Limited will use these graphene-enhanced viscose fibers for textile manufacturing.
TACC signs MoU with Ceylon Graphene Technologies to advance graphene technologies
The Advanced Carbons Company (TACC), a wholly owned subsidiary of HEG, has entered into a Non-Binding Memorandum of Understanding (MOU) with Ceylon Graphene Technologies (CGT) with regard to advancing graphene technology and unlocking its vast potential for diverse applications.
CGT, a LOLC company based in Sri Lanka, is a global expert in graphene production. Leveraging Sri Lanka's premium vein graphite, renowned for its purity and backed by its expertise in material science, CGT aims to be at the forefront of delivering innovative and high-quality graphene products. TACC, part of the LNJ Bhilwara Group, is known for its expertise in synthetic graphite and commitment to sustainable, green technologies.
Superconductivity in bilayer graphene can be turned on or off with a voltage change
An international team of researchers from Spain, the U.S., China and Japan has found that superconductivity in bilayer graphene can be turned on or off with a small voltage change, increasing its usefulness for electronic devices. This follows previous findings regarding twisted bilayer graphene and its ability to exhibit alternating superconducting and insulating regions.
"It's kind of a holy grail of physics to create a material that has superconductivity at room temperature," University of Texas at Austin physicist Allan MacDonald said. "So that's part of the motivation of this work: to understand high-temperature superconductivity better."