Since 2026, with the large-scale rollout of fast-charging EV technologies and comprehensive upgrades to energy storage system safety standards, lithium bis(fluorosulfonyl)imide (LiFSI) — the core electrolyte salt for next-generation lithium batteries — has seen explosive market demand. The industry is standing at a critical turning point where LiFSI shifts from an auxiliary additive to a primary lithium salt.
Rapid Global Shipment Growth & Expanding Market Scale
LiFSI has maintained explosive growth in recent years. Industry statistics reveal that global LiFSI shipments have jumped from kiloton levels in 2020 to tens of thousands of tons by 2025. China’s full-year LiFSI output hit roughly 45,000 tons in 2025, with industry forecasts projecting over 60,000 tons for 2026. The global LiFSI market for electrolytes reached nearly USD 900 million in 2025, and the sector is expected to sustain a CAGR of over 30% through 2030, presenting promising long-term prospects.
On pricing, mainstream bulk commodity data platforms launched daily quotations for liquid LiFSI (converted to solid equivalent) starting July 2026, further refining the electrolyte industrial chain’s pricing benchmark and enabling transparent trading for upstream and downstream manufacturers.
Full-Scale Capacity Expansion Underway
Driven by robust downstream order volumes, domestic lithium battery material manufacturers are ramping up LiFSI capacity investment. Multiple ten-thousand-ton new-build and expansion projects have been announced this year, with Phase 1 capacity scheduled for staged release from H2 2026 to 2027. Several early-stage projects have entered trial or full production, and overall industry capacity is set to double by the end of 2027.
In terms of competition, the LiFSI market is highly concentrated: China’s top three manufacturers captured more than 60% of total market share in 2025. Meanwhile, new entrants and established fluorochemical firms are accelerating capacity rollouts, forming a balanced competitive landscape of “leading players expanding, emerging players catching up”.
Widening Downstream Applications, Fast-Charging & Solid-State Batteries as Core Drivers
Boasting high ionic conductivity, outstanding thermal stability and superior low-temperature performance, LiFSI is evolving from a conventional electrolyte additive to a core lithium salt for batteries. Currently, LiFSI accounts for 1.5%–2% of the formula in mainstream power battery electrolytes, while the proportion exceeds 4% in premium fast-charging battery formulations. As 800V high-voltage fast-charging vehicles gain broader market adoption, LiFSI’s irreplaceable role for fast charging is solidified, and the average industry dosage is predicted to rise to 3%–4% in the future.
Additionally, LiFSI is a critical material compatible with high-voltage, high-nickel cathode and silicon-based anode systems, and plays a pivotal role in semi-solid and all-solid-state battery R&D. Particularly in polymer solid electrolytes, LiFSI is the most widely researched lithium salt and is poised to become the mainstream solute for next-gen all-solid lithium batteries.
Policy Tailwinds Unlock Rigid Market Demand
GB 38031-2025 Electric Vehicles Traction Battery Safety Requirements, the mandatory national standard officially implemented in July 2025, mandates LiFSI addition in power battery electrolytes, generating highly certain incremental demand for the sector. Coupled with energy storage’s preference for long-cycle, high-safety electrolytes, LiFSI’s penetration in energy storage applications is rising rapidly.
Overall, driven by fast-charging technology iteration, enforcement of the new national battery safety standard, expanding energy storage demand and accelerated industrialization of solid-state batteries, LiFSI market demand will keep rising, and the industry will maintain long-term high prosperity.
Welcome to source Lithium Bis(fluorosulfonyl)imide (LiFSI) from Jiayuan Chemical. We deliver premium new lithium salt products and professional technical services to support high-quality development of the new energy industry. Please feel free to reach out for procurement discussions and inquiries!
Demand for 2,3,5-trifluoropyridine is rising, with downstream applications in pharmaceuticals and agrochemicals continuing to expand.
2,3,5-Trifluoropyridine (CAS) 76469-41-5) is an important class of fluorinated heterocyclic compounds. Its molecule simultaneously possesses a pyridine ring and multiple fluorine atoms, exhibiting good reactivity and structural modification value in organic synthesis, and is mainly used as an intermediate in the fields of pharmaceuticals, pesticides, and fine chemicals.In recent years, with the continuous development of fluorinated pharmaceuticals, agrochemicals, and high-value-added fine chemicals, the market attention on fluorinated pyridine intermediates has been increasing. Public industry data shows that fluorinated pyridine structures have been widely used in the development of pesticide and pharmaceutical active molecules. Although 2,3,5-trifluoropyridine is a relatively niche intermediate, its demand is closely related to new drug development, new agrochemical variety development, and custom synthesis projects. Therefore, the market is characterized by "small batches, multiple batches, high purity, and customization."From the perspective of the overall downstream market, agrochemical intermediates still have a large demand base. The global agrochemical intermediates market is projected to reach approximately US$18.84 billion in 2026 and is expected to continue growing, with heterocyclic and halogenated intermediates being important components. Asia, especially China, has a clear advantage in the supply of fluorinated intermediates, relying on its complete fluorochemical industry chain, fine chemical production capacity, and mature custom synthesis system. Pharmaceutical intermediates are an important application areaOne of the most important applications of 2,3,5-trifluoropyridine is as a fluorinated pharmaceutical intermediate and a building block for drug development . The introduction of fluorine atoms can alter the electronic effects, lipid solubility, metabolic stability, and interactions with biological targets of organic molecules; therefore, fluorinated structures have long been a focus of attention in the field of medicinal chemistry.2,3,5-Trifluoropyridine has multiple sites that can be further functionalized, allowing for the preparation of fluoropyridine derivatives with different structures through nucleophilic substitution, coupling, and other reactions. These derivatives can then be used in the development of novel drug lead compounds, drug candidates, and pharmaceutical intermediates. Related research indicates that fluoropyridine and trifluoromethylpyridine structures have already entered various pharmaceutical and veterinary drug products and development pipelines, demonstrating the long-term foundation for the application of fluoropyridine structures in drug development.Demand in the pesticide sector is strongly supported.Pesticides are also an important market for fluorinated pyridine compounds. The fluorinated pyridine skeleton can be used to synthesize herbicides, insecticides, fungicides, and other crop protection active ingredients.Existing research shows that fluorinated pyridine and its derivatives are widely used in the global agrochemical field. More than 20 agrochemical products containing the trifluoromethylpyridine structure have obtained ISO generic names, reflecting the importance of the combination of pyridine ring and fluorine element in modern pesticide molecular design.For 2,3,5-trifluoropyridine, its value lies primarily in its role as an upstream synthetic building block, enabling the formation of more complex pesticide intermediates through further substitution, coupling, or functional group transformation. With the continued development of highly efficient, low-dosage, and structurally innovative pesticide products, the demand for high-purity fluorinated heterocyclic intermediates still has room for further growth.The development of fine chemicals and new materials creates incremental demand.Besides pharmaceuticals and pesticides, 2,3,5-trifluoropyridine can also be used in the research and development of fine chemicals, fluorine-containing functional molecules, and advanced materials . The pyridine ring has good coordination and electronic structure characteristics, while the fluorine atom can further regulate the chemical stability, polarity, and electronic effects of the molecule. Therefore, this type of product can also be used as a fluorine-containing structural unit in laboratory and industrial research and development.Currently, the overall demand in this segment is still smaller than that in pharmaceuticals and agrochemicals, but it is characterized by a clear R&D-driven nature. Customers typically pay more attention to purity, impurity control, batch stability, and customized packaging capabilities.High purity and stable supply have become the key points of procurement.2,3,5-Trifluoropyridine is not a traditional bulk chemical product, and its market competition focuses not only on price, but also on product purity, isomer impurity control, moisture control, batch stability, and continuous supply capability . Especially for pharmaceutical R&D, pesticide technicals, and high-end custom synthesis clients, stable raw material quality directly impacts subsequent reaction yields and final product quality.As the global fluorinated fine chemical industry continues to develop towards higher added value, 2,3,5-trifluoropyridine, as a typical fluorinated pyridine intermediate, is expected to maintain stable demand in the fields of pharmaceutical research and development, agrochemical innovation, and fine chemicals.Changzhou Jiayuan Chemical Co., Ltd. can provide 2,3,5-trifluoropyridine and a variety of fluorinated fine chemicals and intermediates. Domestic and foreign customers are welcome to inquire about product specifications, packaging and procurement needs.
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2026-08-21
【Jiayuan Chemical】 participated in the 2026 Fluorochemical Raw Materials Market Seminar to explore new opportunities in the fluorite industry.
From August 17th to 19th, 2026, the Baichuan Yingfu 2026 Fluorochemical Raw Material Market Seminar and the (2nd) Fluorite Industry Development Forum were held in Luoyang, Henan Province. The conference, themed " Gathering Resources for Fluorite, Ushering in a New Era ," brought together fluorite resource companies, fluorochemical production companies, industry research institutions, and representatives from upstream and downstream sectors of the industry chain to exchange views on market changes, industry development trends, and future opportunities in fluorite and fluorochemical raw materials.Changzhou Jiayuan Chemical Co., Ltd. participated in this conference and had in-depth exchanges with companies in the industry chain on the fields of fluorite resources, high-purity hydrogen fluoride, inorganic fluoride salts, fluorine-containing fine chemicals, electronic chemicals and high-end fluorine-containing materials. They also gained a better understanding of the current supply and demand changes in the fluorochemical industry and the development direction of downstream emerging markets.The value of fluorite resources is becoming increasingly prominent.Fluorite is an important basic raw material in the fluorochemical industry chain. Its resource supply, mining policies and changes in downstream demand directly affect the market for hydrofluoric acid and many fluorine-containing products.Through this conference, Jiayuan Chemical has gained a clearer understanding that as the traditional fluorochemical industry structure continues to optimize and high-end fields such as semiconductors, new energy, advanced materials, and optics continue to develop, the market's focus on fluorine resources has gradually shifted from simply "quantity supply" to resource security, quality stability, and high value-added utilization .Especially in the fields of high-purity fluorides, electronic-grade chemicals, and high-performance fluorine-containing materials, the importance of raw material purity, impurity control, and supply stability is further increasing.High-end applications have become a new growth direction for fluorochemicals.Another important takeaway for Jiayuan Chemical from this conference was the further confirmation of the trend of the fluorochemical industry towards high-end and refined development.Currently, in addition to traditional applications such as refrigerants, aluminum industry, and steel smelting, fluorochemical products are continuously expanding into fields such as semiconductors, integrated circuits, optical coatings, new energy batteries, specialty gases, pharmaceutical intermediates, and high-performance fluorine materials .For example, high-purity sodium fluoride, magnesium fluoride, and calcium fluoride are receiving more attention for their applications in optical materials and electronics; high-purity hydrogen fluoride and electronic-grade hydrofluoric acid are important basic chemicals for the semiconductor industry; and electronic specialty gases and fluorine-containing fine chemicals are also releasing new market demand along with the development of advanced manufacturing industries.This means that in the future, competition among fluorochemical companies will not only be about production capacity and cost, but also about product purity, application development, quality stability, and comprehensive supply capabilities .Strengthen communication between upstream and downstream sectors to capture new market demands.During the meeting, Jiayuan Chemical engaged in extensive exchanges with upstream and downstream enterprises in the industry, gaining a more direct understanding of the current market demand for different products, customer procurement concerns, and potential future applications.Based on our discussions, downstream customers are increasingly focused on stable product supply, purity standards, impurity control, packaging methods, and export support services . This is especially true in the high-end manufacturing sector, where customers often need to select different grades and specifications of products for specific applications, placing higher demands on suppliers' product integration and technical service capabilities.By participating in this conference, Jiayuan Chemical not only gained a deeper understanding of the development trends in the fluorochemical raw material market, but also acquired more market information from the front lines of the industry chain, providing new ideas for subsequent product layout, customer development, and market promotion.Jiayuan Chemical: Continuously Deepening its Development in the Fluorochemical Industry ChainFor many years, Changzhou Jiayuan Chemical Co., Ltd. has been focusing on the development of the fluorochemical industry. Its products cover multiple areas such as fluorite, high-purity fluorides, inorganic fluoride salts, electronic specialty gases, fluorine-containing fine chemicals, fluoropolymers and high-end fluorine materials , and it is actively expanding into application markets such as semiconductors, optics, new energy, pharmaceuticals and advanced materials.Participating in the Luoyang Fluorochemical Raw Material Market Seminar and Fluorite Industry Development Forum is an important opportunity for Jiayuan Chemical to understand industry trends and strengthen industry exchanges.In the future, Jiayuan Chemical will continue to pay attention to changes in fluorite resources and the fluorochemical industry chain, continuously enrich its product system around high purification, refinement and high value-added applications, strengthen communication and collaboration with upstream and downstream partners, and provide domestic and foreign customers with more stable and professional fluorochemical products and supply services.Gathering resources, fluorine embarks on a new journey. Jiayuan Chemical will take this conference as a new starting point, actively seeking new product opportunities and market growth points in the continuous upgrading of the fluorochemical industry, and exploring new development space for the fluorochemical industry together with industry chain partners.
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2026-08-19
【Jia Yuan Chemical】The market demand for o-fluorotrifluorotoluene is steadily increasing, with applications in pharmaceuticals, agrochemicals, and high-end fluorinated intermediates continuing to expa
The market demand for o-fluorotrifluorotoluene is steadily increasing, with applications in pharmaceuticals, agrochemicals, and high-end fluorinated intermediates continuing to expand.As the pharmaceutical, pesticide, and fine chemical industries continue to develop towards higher added value and functionalization, the importance of fluorinated fine chemicals in the industrial chain is constantly increasing. 2-Fluorobenzotrifluoride (CAS: 392-85-8), a typical aromatic fluorinated compound, has become an important basic raw material and organic synthesis intermediate in the fields of pharmaceuticals, agrochemicals, and the research and development of novel fluorinated materials due to the simultaneous presence of fluorine atoms and a trifluoromethyl structure in its molecule.From a market perspective, global demand for fluorinated intermediates has maintained a growth trend in recent years. Related market research shows that pharmaceuticals, agrochemicals, high-performance materials, and electronic chemicals are becoming important drivers of the growth in demand for fluorinated fine chemicals. Although o-fluorotrifluorotoluene is a relatively niche product, its status as a "basic raw material" in multi-step organic synthesis means that market demand is closely related to downstream new drug development, novel pesticide research and development, and the development of the high-end fine chemicals industry.Especially in the pharmaceutical field, fluorine-containing structures have become an important component of modern drug molecule design. By introducing fluorine atoms or trifluoromethyl groups into the molecular structure, the lipid solubility, metabolic stability, and molecular activity of target compounds can be modulated. Therefore, o-fluorotrifluorotoluene can serve as an important starting point for the synthesis of fluorinated aromatic compounds, enabling the preparation of more complex pharmaceutical intermediates and fine chemicals through substitution, coupling, and further functionalization reactions. The continued active development of fluorinated drugs in recent years has further boosted attention to upstream fluorinated aromatic intermediates. **Pesticide intermediates are also a noteworthy application area for o-fluorotrifluorotoluene.** Modern high-efficiency pesticides increasingly emphasize low dosage, high activity, and better environmental adaptability; therefore, fluorine-containing groups are widely used in the structural design of active molecules such as herbicides, fungicides, and insecticides. o-fluorotrifluorotoluene can be further transformed into various fluorinated aromatic derivatives, providing a synthetic basis for novel agrochemical products. With global agriculture developing towards high-efficiency and precision plant protection, the long-term demand for high-quality fluorinated pesticide intermediates remains strong.Beyond the pharmaceutical and agrochemical fields, o-fluorotrifluorotoluene also possesses strong potential for expansion into fine chemicals. The fluorine atom and trifluoromethyl group on its aromatic ring provide diverse reaction sites for subsequent molecular design, enabling the preparation of fluorinated biphenyls, aromatic ethers, and other special fluorinated compounds. For example, publicly available information shows that o-fluorotrifluorotoluene can participate in nucleophilic aromatic substitution reactions to further synthesize trifluoromethyl-containing aromatic compounds, demonstrating its value as a functional synthetic intermediate.In some R&D and industrial synthesis scenarios, o-fluorotrifluorotoluene can also be used as a raw material or medium in special organic reaction systems. With the continuous development of research on high-performance fluorinated materials, specialty chemicals, and electronic materials, its potential downstream applications are expected to continue to expand.From the procurement perspective, o-fluorotrifluorotoluene is a typical fine chemical intermediate, and downstream customers pay close attention to product purity, batch stability, impurity control, and continuous supply capabilities . This is especially true for pharmaceutical and high-end fine chemical customers, where the impurity composition of raw materials can directly affect subsequent reaction yields, product purification difficulty, and final product quality. Therefore, compared to simply focusing on procurement prices, stable product quality and a reliable supply chain are becoming crucial factors for customers when selecting suppliers.Overall, o-fluorotrifluorotoluene is not a bulk chemical, but its market is characterized by high specialization, wide application range, and relatively stable demand , relying on multiple downstream sectors such as pharmaceuticals, agrochemicals, fine chemicals, and novel fluorinated materials. In the future, with the continued advancement of R&D and industrialization of high-end fluorinated chemicals, the application value of o-fluorotrifluorotoluene as a basic fluorinated aromatic intermediate still has room for further expansion.If you are looking for 2-Fluorobenzotrifluoride (CAS: 392-85-8), please contact Changzhou Jiayuan Chemical Co., Ltd. for inquiries and procurement. Jiayuan Chemical can provide stable product supply and professional business services according to the needs of customers in different application fields such as pharmaceuticals, agrochemicals, and fine chemicals. Domestic and foreign customers are welcome to contact us for inquiries, product information, and cooperation discussions.
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2026-08-18
[ Jiayuan Chemical ] The market demand for nitrogen trifluoride (NF₃) continues to grow, with its applications in semiconductors, display panels, and photovoltaics constantly expanding.
With the continuous development of the semiconductor, display panel, photovoltaic, and advanced electronics manufacturing industries, nitrogen trifluoride (NF₃), as an important electronic specialty gas, is receiving increasing market attention. It possesses high reactivity and good process adaptability, making it particularly suitable for high-purity electronic manufacturing environments.Currently, nitrogen trifluoride is mainly used in the semiconductor manufacturing field, where it is often used for cleaning the chambers of equipment such as chemical vapor deposition (CVD) and plasma-enhanced chemical vapor deposition (PECVD). It can remove deposited residues such as silicon, silicon nitride, and silicon oxide, helping to maintain stable equipment operation and wafer production yield.In the display panel industry, nitrogen trifluoride is widely used for cavity cleaning in production equipment for TFT-LCD, OLED, Mini LED, and related display devices. With the development of high-generation panels and new display technologies, the demand for high-purity NF₃ is also increasing.In addition, nitrogen trifluoride is used in thin-film solar cells, photovoltaic material manufacturing, integrated circuits, memory chips, power semiconductors, MEMS devices, and some advanced packaging processes. It can also be used as a highly efficient cleaning gas in silicon-based thin film and silicon nitride thin film deposition equipment.In the fields of scientific research and advanced materials, NF₃ can also be used in plasma etching, fluorine-containing reaction systems, surface treatment of special materials, and the research and development of some electronic materials. With the expansion of AI chips, advanced processes, third-generation semiconductors, and new display industries, high-purity, low-impurity, and stable-supply nitrogen trifluoride will have a broader market space. For inquiries about purchasing high-purity nitrogen trifluoride (NF₃), please contact Changzhou Jiayuan Chemical Co., Ltd. to obtain information on product purity, packaging methods, and supply solutions.
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2026-08-12