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navajo technical university
lowerpoint road, state hwy 371
crownpoint nm 87313

phone: 505.387.7401
fax: 505.786.5644

 

chinle instructional site
po box 849, chinle az, 86503
phone: 928.674.5764
fax: 928.674.5700

 

teec nos pos instructional site
po box 1203, teec nos pos, az 86514
phone: 928.656.3600
fax: 928.656.3596

 

bond wilson technical center
40 road 6580, kirtland, nm 87417
phone: 505.609.5020/5017

 

zuni instructional site
67 301 north, zuni, nm 87327
phone: 505.782.6010

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robinson tom, front, and dr. thiagarajan soundappan, back, are preparing to continue their research on energy storage systems in ntu’s wet labs in crownpoint, nm.

crownpoint, nm – navajo technical university (ntu) associate professor of chemistry dr. thiagarajan soundappan and recent biology graduate robinson tom were published in the journal of power sources for their research activities related to non-flammable, aqueous gel electrolytes used to produce flexible aqueous lithium-ion batteries. their research was conducted over the course of two summers under a faculty and student fellowship with the army research laboratory (arl) in adelphi, md. the research is significant compared to current non-aqueous lithium-ion battery technology and is noteworthy given it was accepted by the journal of power sources, which has an impact factor of 8.247.

“i’m really happy because we learned the new technology for aqueous lithium-ion batteries and our research work is published in a well-recognized journal,” explained dr. soundappan, who collaborated with the arl and university of maryland to conduct the research. “right now we’re a small school. we never had this technology before. we’ll have more publications and patents in the future.”

dr. soundappan and tom’s research focused on ecofriendly, cost effective methods in making an energy storage system that could be low weight, non-flammable, and worn by soldiers to assist with missions in the battlefield. the first year of research worked at understanding interfaces within a battery where an electrolyte and electrode comes in contact, while year two took the knowledge gained from year one to test related monomers and crosslinks and their reaction with an aqueous polymer gel electrolyte.

results from the research showed that the choice of monomers and crosslinks affects the ability of the solution to form a solid gel. increasing crosslinks allowed for more charge-discharge cycles, which translated to a higher capacity of the battery. it also allowed the battery to perform better at various temperatures, something useful in everyday application.

“it makes me feel proud, especially being a veteran myself,” said tom, who is a resident of little water, nm and served in the u.s. army. “now i know there are some energy sources that soldiers can use in the battlefield that won’t weigh them down and are less volatile. i feel happy about that, about providing some type of service.”

arl has a patent on the lithium-ion batteries, including the publication, and ntu is working at transferring the technology to crownpoint to continue the research and develop a startup company in battery manufacturing on the navajo nation. the venture project would require collaboration with ntu’s innovation center and other entities, but once in motion, it could serve as a means of economic development much needed in the region.

“we want to get off fossil fuel and use green energy,” dr. soundappan stated while describing the possible impact of the project. “by implementing this technology inside [the navajo nation], we can fuel job opportunities for our students and the community.”

one student that would benefit from such a venture would be tom, who has a long-term goal of creating a national laboratory on the navajo nation where research could be conducted internally rather than outsourced. he also has aspirations of becoming a faculty member, which he’s on track to do under the american indian science and engineering society’s lighting the pathway fellowship. the fellowship’s aim is to increase the representation of american indian, alaska native, and native hawaiians in science, technology, engineering, and mathematics faculty positions at universities across the country.

“students can know that they can take what they’ve learned at ntu to other areas, and there’s an interest and need,” explained tom, who works part-time for ntu’s biology program as a laboratory technician while he explores graduate school opportunities. “it’s not something you have to do elsewhere, it’s something you can do here. when you do research, you contribute to knowledge.”

as a result of tech transfer efforts with arl, ntu’s wet laboratories have obtained a brand-new, sophisticated battery cycler, which is a vital research and testing instrument of rechargeable batteries. students have also begun research on battery electrochemistry.

“we’re going to continue the battery research at ntu that will help our students, community, and the navajo nation,” stated dr. soundappan. “i’d like to thank ntu administration and army research laboratory colleagues dr. arthur cresce, dr. kang xu, and dr. patrice collins for the great opportunity. without their help, it’s not possible for us to learn this technology and transfer it to ntu.”

for more information about ntu’s efforts with lithium-ion battery manufacturing technology, contact dr. thiagarajan soundappan at tsoundappan@navajotech.edu. to access the article in the journal of power sources, visit //www.sciencedirect.com/science/article/pii/s0378775320306820.

contact ntu

navajo technical university
lowerpoint road, state hwy 371
crownpoint, nm 87313

phone: 505.387.7401
fax: 505.786.5644


chinle instructional site
po box 849, chinle, az 86503

phone: 928.674.5764
fax: 928.674.5700


teec nos pos instructional site
po box 1203, teec nos pos, az 86514

phone: 928.656.3600
fax: 928.656.3596


bond wilson technical center
40 road 6580
kirtland, nm 87417
(505) 609-5020/5017
(located off of highway 64 next to judy nelson elementary school in kirtland, nm)


zuni instructional site
67 301 north, zuni, nm 87327

phone: 505.782.6010